data_SMR-02c94006984570ac4ec5c64b853a4937_1 _entry.id SMR-02c94006984570ac4ec5c64b853a4937_1 _struct.entry_id SMR-02c94006984570ac4ec5c64b853a4937_1 _struct.pdbx_model_details ;This model was generated unsupervised by the SWISS-MODEL homology-modelling pipeline for the SWISS-MODEL Repository, a database of annotated 3D protein structure models. The modelled monomer covers following UniProtKB entries: - Q8WUH1 (isoform 1)/ CHUR_HUMAN, Protein Churchill Estimated model accuracy of this model is 0.834, calculated by SWISS-MODEL as Global Model Quality Estimate (GMQE). ; _struct.pdbx_structure_determination_methodology computational _struct.title 'Model for UniProtKB entries Q8WUH1 (isoform 1)' _audit_conform.dict_location https://raw.githubusercontent.com/ihmwg/ModelCIF/d18ba38/base/mmcif_ma-core.dic _audit_conform.dict_name mmcif_ma.dic _audit_conform.dict_version 1.4.6 # loop_ _citation.id _citation.title _citation.journal_abbrev _citation.journal_volume _citation.page_first _citation.page_last _citation.year _citation.pdbx_database_id_PubMed _citation.pdbx_database_id_DOI primary 'The SWISS-MODEL Repository - new features and functionality' 'Nucleic Acids Res.' 45 D313 D319 2017 27899672 10.1093/nar/gkw1132 2 'SWISS-MODEL: homology modelling of protein structures and complexes' 'Nucleic Acids Res.' 46 W296 W303 2018 29788355 10.1093/nar/gky427 3 'ProMod3 - A versatile homology modelling toolbox' 'PLoS Comput. Biol.' 17(1) 1 18 2021 33507980 10.1371/journal.pcbi.1008667 4 'QMEANDisCo - distance constraints applied on model quality estimation' Bioinformatics 36 1765 1771 2020 31697312 10.1093/bioinformatics/btz828 5 'OpenStructure: an integrated software framework for computational structural biology' 'Acta Crystallogr., Sect. D: Biol. Crystallogr.' 69 701 709 2013 23633579 10.1107/S0907444913007051 6 'BLAST+: architecture and applications' 'BMC Bioinf.' 10 421 . 2009 20003500 10.1186/1471-2105-10-421 7 'HH-suite3 for fast remote homology detection and deep protein annotation' 'BMC Bioinf.' 20 473 . 2019 31521110 10.1186/s12859-019-3019-7 # # loop_ _citation_author.citation_id _citation_author.name _citation_author.ordinal primary 'Bienert, S.' 1 primary 'Waterhouse, A.' 2 primary 'de Beer, T.A.P.' 3 primary 'Tauriello, G.' 4 primary 'Studer, G.' 5 primary 'Bordoli, L.' 6 primary 'Schwede, T.' 7 2 'Waterhouse, A.' 8 2 'Bertoni, M.' 9 2 'Bienert, S.' 10 2 'Studer, G.' 11 2 'Tauriello, G.' 12 2 'Gumienny, R.' 13 2 'Heer, F.T.' 14 2 'de Beer, T.A.P.' 15 2 'Rempfer, C.' 16 2 'Bordoli, L.' 17 2 'Lepore, R.' 18 2 'Schwede, T.' 19 3 'Studer, G.' 20 3 'Tauriello, G.' 21 3 'Bienert, S.' 22 3 'Biasini, M.' 23 3 'Johner, N.' 24 3 'Schwede, T.' 25 4 'Studer, G.' 26 4 'Rempfer, C.' 27 4 'Waterhouse, A.M.' 28 4 'Gumienny, R.' 29 4 'Haas, J.' 30 4 'Schwede, T.' 31 5 'Biasini, M.' 32 5 'Schmidt, T.' 33 5 'Bienert, S.' 34 5 'Mariani, V.' 35 5 'Studer, G.' 36 5 'Haas, J.' 37 5 'Johner, N.' 38 5 'Schenk, A.D.' 39 5 'Philippsen, A.' 40 5 'Schwede, T.' 41 6 'Camacho, C.' 42 6 'Coulouris, G.' 43 6 'Avagyan, V.' 44 6 'Ma, N.' 45 6 'Papadopoulos, J.' 46 6 'Bealer, K.' 47 6 'Madden, T.L.' 48 7 'Steinegger, M.' 49 7 'Meier, M.' 50 7 'Mirdita, M.' 51 7 'Vohringer, H.' 52 7 'Haunsberger, S.J.' 53 7 'Soding, J.' 54 # # loop_ _software.pdbx_ordinal _software.name _software.classification _software.description _software.version _software.type _software.location _software.citation_id 1 SWISS-MODEL 'model building' 'Homology modelling web service' 2025-04.4 package https://swissmodel.expasy.org 2 2 ProMod3 'model building' 'Modular homology modelling engine' 3.4.1 library https://git.scicore.unibas.ch/schwede/ProMod3 3 3 QMEAN 'model building' 'QMEAN - Qualitative Model Energy ANalysis' 4.3.1 library https://git.scicore.unibas.ch/schwede/QMEAN 4 4 OpenStructure 'data processing' 'Open-Source Computational Structural Biology Framework' 2.8.0 package https://openstructure.org/ 5 5 BLAST 'data collection' . 2.14.1 package https://blast.ncbi.nlm.nih.gov 6 6 HH-suite 'data collection' 'HH-suite3 for sensitive sequence searching' 3.2.0 package https://github.com/soedinglab/hh-suite 7 # # loop_ _ma_software_group.ordinal_id _ma_software_group.group_id _ma_software_group.software_id _ma_software_group.parameter_group_id 1 1 6 . 2 2 1 . 3 2 4 . 4 2 5 . 5 2 6 . 6 3 1 . 7 3 4 . 8 4 1 . 9 4 2 . 10 4 4 . 11 5 3 . 12 6 1 . 13 6 3 . 14 6 4 . # # loop_ _audit_author.name _audit_author.pdbx_ordinal 'Bienert, S.' 1 'Waterhouse, A.' 2 'de Beer, T.A.P.' 3 'Tauriello, G.' 4 'Studer, G.' 5 'Bordoli, L.' 6 'Schwede, T.' 7 # # loop_ _chem_comp.id _chem_comp.type _chem_comp.name _chem_comp.formula _chem_comp.formula_weight _chem_comp.ma_provenance ALA 'L-peptide linking' ALANINE 'C3 H7 N O2' 89.094 'CCD Core' ARG 'L-peptide linking' ARGININE 'C6 H15 N4 O2 1' 175.212 'CCD Core' ASN 'L-peptide linking' ASPARAGINE 'C4 H8 N2 O3' 132.119 'CCD Core' ASP 'L-peptide linking' 'ASPARTIC ACID' 'C4 H7 N O4' 133.103 'CCD Core' CYS 'L-peptide linking' CYSTEINE 'C3 H7 N O2 S' 121.154 'CCD Core' GLN 'L-peptide linking' GLUTAMINE 'C5 H10 N2 O3' 146.146 'CCD Core' GLU 'L-peptide linking' 'GLUTAMIC ACID' 'C5 H9 N O4' 147.130 'CCD Core' GLY 'peptide linking' GLYCINE 'C2 H5 N O2' 75.067 'CCD Core' HIS 'L-peptide linking' HISTIDINE 'C6 H10 N3 O2 1' 156.165 'CCD Core' ILE 'L-peptide linking' ISOLEUCINE 'C6 H13 N O2' 131.175 'CCD Core' LEU 'L-peptide linking' LEUCINE 'C6 H13 N O2' 131.175 'CCD Core' LYS 'L-peptide linking' LYSINE 'C6 H15 N2 O2 1' 147.198 'CCD Core' MET 'L-peptide linking' METHIONINE 'C5 H11 N O2 S' 149.208 'CCD Core' PHE 'L-peptide linking' PHENYLALANINE 'C9 H11 N O2' 165.192 'CCD Core' PRO 'L-peptide linking' PROLINE 'C5 H9 N O2' 115.132 'CCD Core' SER 'L-peptide linking' SERINE 'C3 H7 N O3' 105.093 'CCD Core' THR 'L-peptide linking' THREONINE 'C4 H9 N O3' 119.120 'CCD Core' TYR 'L-peptide linking' TYROSINE 'C9 H11 N O3' 181.191 'CCD Core' VAL 'L-peptide linking' VALINE 'C5 H11 N O2' 117.148 'CCD Core' ZN non-polymer 'ZINC ION' Zn 65.380 'CCD Core' # # loop_ _entity.id _entity.type _entity.src_method _entity.pdbx_description _entity.formula_weight _entity.pdbx_number_of_molecules _entity.details 1 polymer man . 14992.615 1 . 2 non-polymer man 'ZINC ION' 65.380 2 . # # loop_ _struct_ref.id _struct_ref.entity_id _struct_ref.db_name _struct_ref.db_code _struct_ref.pdbx_db_accession _struct_ref.pdbx_align_begin _struct_ref.pdbx_seq_one_letter_code _struct_ref.details 1 1 UNP CHUR_HUMAN Q8WUH1 1 ;MCGDCVEKEYPNRGNTCLENGSFLLNFTGCAVCSKRDFMLITNKSLKEEDGEEIVTYDPDLCKNCHHVIA RHEYTFSIMDEFQEYTMLCLLCGKAEDTISILPDDPRQMTLLF ; 'Protein Churchill' # # loop_ _struct_ref_seq.align_id _struct_ref_seq.ref_id _struct_ref_seq.seq_align_beg _struct_ref_seq.seq_align_end _struct_ref_seq.db_align_beg _struct_ref_seq.db_align_end 1 1 1 113 1 113 # # loop_ _ma_target_ref_db_details.target_entity_id _ma_target_ref_db_details.db_name _ma_target_ref_db_details.db_name_other_details _ma_target_ref_db_details.db_code _ma_target_ref_db_details.db_accession _ma_target_ref_db_details.seq_db_isoform _ma_target_ref_db_details.seq_db_align_begin _ma_target_ref_db_details.seq_db_align_end _ma_target_ref_db_details.ncbi_taxonomy_id _ma_target_ref_db_details.organism_scientific _ma_target_ref_db_details.seq_db_sequence_version_date _ma_target_ref_db_details.seq_db_sequence_checksum 1 UNP . CHUR_HUMAN Q8WUH1 Q8WUH1-1 1 113 9606 'Homo sapiens (Human)' 2022-02-23 22F7481690A03EF6 # # loop_ _entity_poly.entity_id _entity_poly.type _entity_poly.nstd_linkage _entity_poly.nstd_monomer _entity_poly.pdbx_strand_id _entity_poly.pdbx_seq_one_letter_code _entity_poly.pdbx_seq_one_letter_code_can 1 polypeptide(L) no no A ;MCGDCVEKEYPNRGNTCLENGSFLLNFTGCAVCSKRDFMLITNKSLKEEDGEEIVTYDPDLCKNCHHVIA RHEYTFSIMDEFQEYTMLCLLCGKAEDTISILPDDPRQMTLLF ; ;MCGDCVEKEYPNRGNTCLENGSFLLNFTGCAVCSKRDFMLITNKSLKEEDGEEIVTYDPDLCKNCHHVIA RHEYTFSIMDEFQEYTMLCLLCGKAEDTISILPDDPRQMTLLF ; # # loop_ _pdbx_entity_nonpoly.entity_id _pdbx_entity_nonpoly.name _pdbx_entity_nonpoly.comp_id _pdbx_entity_nonpoly.ma_model_mode 2 'ZINC ION' ZN implicit # # loop_ _entity_poly_seq.entity_id _entity_poly_seq.num _entity_poly_seq.mon_id _entity_poly_seq.hetero 1 1 MET . 1 2 CYS . 1 3 GLY . 1 4 ASP . 1 5 CYS . 1 6 VAL . 1 7 GLU . 1 8 LYS . 1 9 GLU . 1 10 TYR . 1 11 PRO . 1 12 ASN . 1 13 ARG . 1 14 GLY . 1 15 ASN . 1 16 THR . 1 17 CYS . 1 18 LEU . 1 19 GLU . 1 20 ASN . 1 21 GLY . 1 22 SER . 1 23 PHE . 1 24 LEU . 1 25 LEU . 1 26 ASN . 1 27 PHE . 1 28 THR . 1 29 GLY . 1 30 CYS . 1 31 ALA . 1 32 VAL . 1 33 CYS . 1 34 SER . 1 35 LYS . 1 36 ARG . 1 37 ASP . 1 38 PHE . 1 39 MET . 1 40 LEU . 1 41 ILE . 1 42 THR . 1 43 ASN . 1 44 LYS . 1 45 SER . 1 46 LEU . 1 47 LYS . 1 48 GLU . 1 49 GLU . 1 50 ASP . 1 51 GLY . 1 52 GLU . 1 53 GLU . 1 54 ILE . 1 55 VAL . 1 56 THR . 1 57 TYR . 1 58 ASP . 1 59 PRO . 1 60 ASP . 1 61 LEU . 1 62 CYS . 1 63 LYS . 1 64 ASN . 1 65 CYS . 1 66 HIS . 1 67 HIS . 1 68 VAL . 1 69 ILE . 1 70 ALA . 1 71 ARG . 1 72 HIS . 1 73 GLU . 1 74 TYR . 1 75 THR . 1 76 PHE . 1 77 SER . 1 78 ILE . 1 79 MET . 1 80 ASP . 1 81 GLU . 1 82 PHE . 1 83 GLN . 1 84 GLU . 1 85 TYR . 1 86 THR . 1 87 MET . 1 88 LEU . 1 89 CYS . 1 90 LEU . 1 91 LEU . 1 92 CYS . 1 93 GLY . 1 94 LYS . 1 95 ALA . 1 96 GLU . 1 97 ASP . 1 98 THR . 1 99 ILE . 1 100 SER . 1 101 ILE . 1 102 LEU . 1 103 PRO . 1 104 ASP . 1 105 ASP . 1 106 PRO . 1 107 ARG . 1 108 GLN . 1 109 MET . 1 110 THR . 1 111 LEU . 1 112 LEU . 1 113 PHE . # # loop_ _struct_asym.id _struct_asym.entity_id _struct_asym.details A 1 . B 2 . C 2 . # # loop_ _pdbx_poly_seq_scheme.asym_id _pdbx_poly_seq_scheme.entity_id _pdbx_poly_seq_scheme.seq_id _pdbx_poly_seq_scheme.mon_id _pdbx_poly_seq_scheme.pdb_seq_num _pdbx_poly_seq_scheme.auth_seq_num _pdbx_poly_seq_scheme.pdb_mon_id _pdbx_poly_seq_scheme.auth_mon_id _pdbx_poly_seq_scheme.pdb_strand_id _pdbx_poly_seq_scheme.pdb_ins_code A 1 1 MET 1 ? ? ? A . A 1 2 CYS 2 2 CYS CYS A . A 1 3 GLY 3 3 GLY GLY A . A 1 4 ASP 4 4 ASP ASP A . A 1 5 CYS 5 5 CYS CYS A . A 1 6 VAL 6 6 VAL VAL A . A 1 7 GLU 7 7 GLU GLU A . A 1 8 LYS 8 8 LYS LYS A . A 1 9 GLU 9 9 GLU GLU A . A 1 10 TYR 10 10 TYR TYR A . A 1 11 PRO 11 11 PRO PRO A . A 1 12 ASN 12 12 ASN ASN A . A 1 13 ARG 13 13 ARG ARG A . A 1 14 GLY 14 14 GLY GLY A . A 1 15 ASN 15 15 ASN ASN A . A 1 16 THR 16 16 THR THR A . A 1 17 CYS 17 17 CYS CYS A . A 1 18 LEU 18 18 LEU LEU A . A 1 19 GLU 19 19 GLU GLU A . A 1 20 ASN 20 20 ASN ASN A . A 1 21 GLY 21 21 GLY GLY A . A 1 22 SER 22 22 SER SER A . A 1 23 PHE 23 23 PHE PHE A . A 1 24 LEU 24 24 LEU LEU A . A 1 25 LEU 25 25 LEU LEU A . A 1 26 ASN 26 26 ASN ASN A . A 1 27 PHE 27 27 PHE PHE A . A 1 28 THR 28 28 THR THR A . A 1 29 GLY 29 29 GLY GLY A . A 1 30 CYS 30 30 CYS CYS A . A 1 31 ALA 31 31 ALA ALA A . A 1 32 VAL 32 32 VAL VAL A . A 1 33 CYS 33 33 CYS CYS A . A 1 34 SER 34 34 SER SER A . A 1 35 LYS 35 35 LYS LYS A . A 1 36 ARG 36 36 ARG ARG A . A 1 37 ASP 37 37 ASP ASP A . A 1 38 PHE 38 38 PHE PHE A . A 1 39 MET 39 39 MET MET A . A 1 40 LEU 40 40 LEU LEU A . A 1 41 ILE 41 41 ILE ILE A . A 1 42 THR 42 42 THR THR A . A 1 43 ASN 43 43 ASN ASN A . A 1 44 LYS 44 44 LYS LYS A . A 1 45 SER 45 45 SER SER A . A 1 46 LEU 46 46 LEU LEU A . A 1 47 LYS 47 47 LYS LYS A . A 1 48 GLU 48 48 GLU GLU A . A 1 49 GLU 49 49 GLU GLU A . A 1 50 ASP 50 50 ASP ASP A . A 1 51 GLY 51 51 GLY GLY A . A 1 52 GLU 52 52 GLU GLU A . A 1 53 GLU 53 53 GLU GLU A . A 1 54 ILE 54 54 ILE ILE A . A 1 55 VAL 55 55 VAL VAL A . A 1 56 THR 56 56 THR THR A . A 1 57 TYR 57 57 TYR TYR A . A 1 58 ASP 58 58 ASP ASP A . A 1 59 PRO 59 59 PRO PRO A . A 1 60 ASP 60 60 ASP ASP A . A 1 61 LEU 61 61 LEU LEU A . A 1 62 CYS 62 62 CYS CYS A . A 1 63 LYS 63 63 LYS LYS A . A 1 64 ASN 64 64 ASN ASN A . A 1 65 CYS 65 65 CYS CYS A . A 1 66 HIS 66 66 HIS HIS A . A 1 67 HIS 67 67 HIS HIS A . A 1 68 VAL 68 68 VAL VAL A . A 1 69 ILE 69 69 ILE ILE A . A 1 70 ALA 70 70 ALA ALA A . A 1 71 ARG 71 71 ARG ARG A . A 1 72 HIS 72 72 HIS HIS A . A 1 73 GLU 73 73 GLU GLU A . A 1 74 TYR 74 74 TYR TYR A . A 1 75 THR 75 75 THR THR A . A 1 76 PHE 76 76 PHE PHE A . A 1 77 SER 77 77 SER SER A . A 1 78 ILE 78 78 ILE ILE A . A 1 79 MET 79 79 MET MET A . A 1 80 ASP 80 80 ASP ASP A . A 1 81 GLU 81 81 GLU GLU A . A 1 82 PHE 82 82 PHE PHE A . A 1 83 GLN 83 83 GLN GLN A . A 1 84 GLU 84 84 GLU GLU A . A 1 85 TYR 85 85 TYR TYR A . A 1 86 THR 86 86 THR THR A . A 1 87 MET 87 87 MET MET A . A 1 88 LEU 88 88 LEU LEU A . A 1 89 CYS 89 89 CYS CYS A . A 1 90 LEU 90 90 LEU LEU A . A 1 91 LEU 91 91 LEU LEU A . A 1 92 CYS 92 92 CYS CYS A . A 1 93 GLY 93 93 GLY GLY A . A 1 94 LYS 94 94 LYS LYS A . A 1 95 ALA 95 95 ALA ALA A . A 1 96 GLU 96 96 GLU GLU A . A 1 97 ASP 97 97 ASP ASP A . A 1 98 THR 98 98 THR THR A . A 1 99 ILE 99 99 ILE ILE A . A 1 100 SER 100 100 SER SER A . A 1 101 ILE 101 101 ILE ILE A . A 1 102 LEU 102 102 LEU LEU A . A 1 103 PRO 103 103 PRO PRO A . A 1 104 ASP 104 104 ASP ASP A . A 1 105 ASP 105 105 ASP ASP A . A 1 106 PRO 106 106 PRO PRO A . A 1 107 ARG 107 107 ARG ARG A . A 1 108 GLN 108 108 GLN GLN A . A 1 109 MET 109 ? ? ? A . A 1 110 THR 110 ? ? ? A . A 1 111 LEU 111 ? ? ? A . A 1 112 LEU 112 ? ? ? A . A 1 113 PHE 113 ? ? ? A . # # loop_ _pdbx_nonpoly_scheme.asym_id _pdbx_nonpoly_scheme.entity_id _pdbx_nonpoly_scheme.mon_id _pdbx_nonpoly_scheme.ndb_seq_num _pdbx_nonpoly_scheme.pdb_seq_num _pdbx_nonpoly_scheme.auth_seq_num _pdbx_nonpoly_scheme.auth_mon_id _pdbx_nonpoly_scheme.pdb_strand_id _pdbx_nonpoly_scheme.pdb_ins_code B 2 ZN 1 1 1 ZN '_' . C 2 ZN 1 2 2 ZN '_' . # # loop_ _ma_data.id _ma_data.name _ma_data.content_type _ma_data.content_type_other_details 1 'Churchill protein {PDB ID=2jox, label_asym_id=A, auth_asym_id=A, SMTL ID=2jox.1.A}' 'template structure' . 2 'ZINC ION {PDB ID=2jox, label_asym_id=B, auth_asym_id=A, SMTL ID=2jox.1._.1}' 'template structure' . 3 'ZINC ION {PDB ID=2jox, label_asym_id=C, auth_asym_id=A, SMTL ID=2jox.1._.2}' 'template structure' . 4 . target . 5 'ZINC ION' target . 6 'Target-template alignment by HHblits to 2jox, label_asym_id=A' 'target-template alignment' . 7 'model 1' 'model coordinates' . 8 SMTL 'reference database' . 9 PDB 'reference database' . 10 'Template search output' other 'Results of the sequence search' # # loop_ _ma_data_group.ordinal_id _ma_data_group.group_id _ma_data_group.data_id 1 1 4 2 1 8 3 1 9 4 2 10 5 3 4 6 3 5 7 3 1 8 3 2 9 3 3 10 3 6 11 4 1 12 4 2 13 4 3 14 4 6 15 4 5 16 5 7 # # loop_ _ma_data_ref_db.data_id _ma_data_ref_db.name _ma_data_ref_db.location_url _ma_data_ref_db.version _ma_data_ref_db.release_date 8 SMTL https://swissmodel.expasy.org/templates/ . 2025-06-06 9 PDB https://www.wwpdb.org . 2025-05-30 # # loop_ _ma_target_entity.entity_id _ma_target_entity.data_id _ma_target_entity.origin 1 4 'reference database' 2 5 . # # loop_ _ma_target_entity_instance.asym_id _ma_target_entity_instance.entity_id _ma_target_entity_instance.details A 1 . B 2 . C 2 . # # loop_ _ma_template_trans_matrix.id _ma_template_trans_matrix.rot_matrix[1][1] _ma_template_trans_matrix.rot_matrix[2][1] _ma_template_trans_matrix.rot_matrix[3][1] _ma_template_trans_matrix.rot_matrix[1][2] _ma_template_trans_matrix.rot_matrix[2][2] _ma_template_trans_matrix.rot_matrix[3][2] _ma_template_trans_matrix.rot_matrix[1][3] _ma_template_trans_matrix.rot_matrix[2][3] _ma_template_trans_matrix.rot_matrix[3][3] _ma_template_trans_matrix.tr_vector[1] _ma_template_trans_matrix.tr_vector[2] _ma_template_trans_matrix.tr_vector[3] 1 1.000000 0.000000 0.000000 0.000000 1.000000 0.000000 0.000000 0.000000 1.000000 0 0 0 # # loop_ _ma_template_details.ordinal_id _ma_template_details.template_id _ma_template_details.template_origin _ma_template_details.template_entity_type _ma_template_details.template_trans_matrix_id _ma_template_details.template_data_id _ma_template_details.target_asym_id _ma_template_details.template_label_asym_id _ma_template_details.template_label_entity_id _ma_template_details.template_model_num _ma_template_details.template_auth_asym_id 1 1 'reference database' polymer 1 1 A A 1 1 A 2 2 'reference database' non-polymer 1 2 B B 2 1 A 3 3 'reference database' non-polymer 1 3 C C 2 1 A # # loop_ _ma_template_poly.template_id _ma_template_poly.seq_one_letter_code _ma_template_poly.seq_one_letter_code_can 1 ;CGDCVEKEYPNRGNTCLENGSFLLNFTGCAVCSKRDFMLITNKSLKEEDGEEIVTYDHLCKNCHHVIARH EYTFSIMDEFQEYTMLCLLCGKAEDTISILPDDPRQ ; ;CGDCVEKEYPNRGNTCLENGSFLLNFTGCAVCSKRDFMLITNKSLKEEDGEEIVTYDHLCKNCHHVIARH EYTFSIMDEFQEYTMLCLLCGKAEDTISILPDDPRQ ; # # loop_ _ma_template_poly_segment.id _ma_template_poly_segment.template_id _ma_template_poly_segment.residue_number_begin _ma_template_poly_segment.residue_number_end 1 1 1 106 # # loop_ _ma_template_non_poly.template_id _ma_template_non_poly.comp_id _ma_template_non_poly.details 2 ZN 'ZINC ION' 3 ZN 'ZINC ION' # # loop_ _ma_template_ref_db_details.template_id _ma_template_ref_db_details.db_name _ma_template_ref_db_details.db_name_other_details _ma_template_ref_db_details.db_accession_code _ma_template_ref_db_details.db_version_date 1 PDB . 2jox 2024-05-08 2 PDB . 2jox 2024-05-08 3 PDB . 2jox 2024-05-08 # # loop_ _ma_target_template_poly_mapping.id _ma_target_template_poly_mapping.template_segment_id _ma_target_template_poly_mapping.target_asym_id _ma_target_template_poly_mapping.target_seq_id_begin _ma_target_template_poly_mapping.target_seq_id_end 1 1 A 1 113 # # loop_ _ma_alignment_info.alignment_id _ma_alignment_info.data_id _ma_alignment_info.software_group_id _ma_alignment_info.alignment_length _ma_alignment_info.alignment_type _ma_alignment_info.alignment_mode 1 6 1 113 'target-template pairwise alignment' local # # loop_ _ma_alignment_details.ordinal_id _ma_alignment_details.alignment_id _ma_alignment_details.template_segment_id _ma_alignment_details.target_asym_id _ma_alignment_details.score_type _ma_alignment_details.score_type_other_details _ma_alignment_details.score_value _ma_alignment_details.percent_sequence_identity _ma_alignment_details.sequence_identity_denominator _ma_alignment_details.sequence_identity_denominator_other_details 1 1 1 A 'HHblits e-value' . 9.6e-58 99.057 'Number of aligned residue pairs (not including the gaps)' . # # loop_ _ma_alignment.ordinal_id _ma_alignment.alignment_id _ma_alignment.target_template_flag _ma_alignment.sequence 1 1 1 MCGDCVEKEYPNRGNTCLENGSFLLNFTGCAVCSKRDFMLITNKSLKEEDGEEIVTYDPDLCKNCHHVIARHEYTFSIMDEFQEYTMLCLLCGKAEDTISILPDDPRQMTLLF 2 1 2 -CGDCVEKEYPNRGNTCLENGSFLLNFTGCAVCSKRDFMLITNKSLKEEDGEEIVTYDH-LCKNCHHVIARHEYTFSIMDEFQEYTMLCLLCGKAEDTISILPDDPRQ----- # # loop_ _ma_protocol_step.ordinal_id _ma_protocol_step.protocol_id _ma_protocol_step.step_id _ma_protocol_step.method_type _ma_protocol_step.step_name _ma_protocol_step.details _ma_protocol_step.software_group_id _ma_protocol_step.input_data_group_id _ma_protocol_step.output_data_group_id 1 1 1 'template search' 'template search' 'SWISS-MODEL template search in PDB' 2 1 2 2 1 2 'template selection' 'template selection' 'Automatic template selection by SWISS-MODEL' 3 2 4 3 1 3 modeling 'homology modeling' 'SWISS-MODEL auto-model mode using ProMod3 on 2jox.1' 4 3 5 # # loop_ _ma_model_list.ordinal_id _ma_model_list.model_id _ma_model_list.model_group_id _ma_model_list.model_name _ma_model_list.model_group_name _ma_model_list.data_id _ma_model_list.model_type _ma_model_list.model_type_other_details 1 1 1 'model 1' . 7 'Homology model' . # # loop_ _atom_site.group_PDB _atom_site.id _atom_site.type_symbol _atom_site.label_atom_id _atom_site.label_alt_id _atom_site.label_comp_id _atom_site.label_seq_id _atom_site.auth_seq_id _atom_site.pdbx_PDB_ins_code _atom_site.label_asym_id _atom_site.Cartn_x _atom_site.Cartn_y _atom_site.Cartn_z _atom_site.occupancy _atom_site.label_entity_id _atom_site.auth_asym_id _atom_site.auth_comp_id _atom_site.B_iso_or_equiv _atom_site.pdbx_PDB_model_num ATOM 1 N N . CYS 2 2 ? A -1.390 14.409 -8.622 1 1 A CYS 0.800 1 ATOM 2 C CA . CYS 2 2 ? A -0.850 14.956 -9.932 1 1 A CYS 0.800 1 ATOM 3 C C . CYS 2 2 ? A 0.579 14.592 -10.325 1 1 A CYS 0.800 1 ATOM 4 O O . CYS 2 2 ? A 1.018 15.016 -11.378 1 1 A CYS 0.800 1 ATOM 5 C CB . CYS 2 2 ? A -1.050 16.513 -10.073 1 1 A CYS 0.800 1 ATOM 6 S SG . CYS 2 2 ? A -0.569 17.555 -8.655 1 1 A CYS 0.800 1 ATOM 7 N N . GLY 3 3 ? A 1.341 13.778 -9.552 1 1 A GLY 0.830 1 ATOM 8 C CA . GLY 3 3 ? A 2.741 13.492 -9.907 1 1 A GLY 0.830 1 ATOM 9 C C . GLY 3 3 ? A 3.678 14.374 -9.134 1 1 A GLY 0.830 1 ATOM 10 O O . GLY 3 3 ? A 4.329 13.901 -8.215 1 1 A GLY 0.830 1 ATOM 11 N N . ASP 4 4 ? A 3.689 15.694 -9.395 1 1 A ASP 0.880 1 ATOM 12 C CA . ASP 4 4 ? A 4.462 16.706 -8.675 1 1 A ASP 0.880 1 ATOM 13 C C . ASP 4 4 ? A 4.187 16.803 -7.170 1 1 A ASP 0.880 1 ATOM 14 O O . ASP 4 4 ? A 4.895 17.456 -6.412 1 1 A ASP 0.880 1 ATOM 15 C CB . ASP 4 4 ? A 4.118 18.079 -9.279 1 1 A ASP 0.880 1 ATOM 16 C CG . ASP 4 4 ? A 4.281 18.023 -10.783 1 1 A ASP 0.880 1 ATOM 17 O OD1 . ASP 4 4 ? A 5.409 18.240 -11.280 1 1 A ASP 0.880 1 ATOM 18 O OD2 . ASP 4 4 ? A 3.250 17.697 -11.429 1 1 A ASP 0.880 1 ATOM 19 N N . CYS 5 5 ? A 3.134 16.101 -6.710 1 1 A CYS 0.890 1 ATOM 20 C CA . CYS 5 5 ? A 2.821 15.844 -5.320 1 1 A CYS 0.890 1 ATOM 21 C C . CYS 5 5 ? A 3.852 15.001 -4.587 1 1 A CYS 0.890 1 ATOM 22 O O . CYS 5 5 ? A 3.927 15.045 -3.361 1 1 A CYS 0.890 1 ATOM 23 C CB . CYS 5 5 ? A 1.503 15.034 -5.177 1 1 A CYS 0.890 1 ATOM 24 S SG . CYS 5 5 ? A -0.007 15.876 -5.744 1 1 A CYS 0.890 1 ATOM 25 N N . VAL 6 6 ? A 4.591 14.140 -5.311 1 1 A VAL 0.900 1 ATOM 26 C CA . VAL 6 6 ? A 5.475 13.167 -4.710 1 1 A VAL 0.900 1 ATOM 27 C C . VAL 6 6 ? A 6.899 13.451 -5.145 1 1 A VAL 0.900 1 ATOM 28 O O . VAL 6 6 ? A 7.157 13.788 -6.296 1 1 A VAL 0.900 1 ATOM 29 C CB . VAL 6 6 ? A 5.068 11.712 -4.985 1 1 A VAL 0.900 1 ATOM 30 C CG1 . VAL 6 6 ? A 3.605 11.509 -4.546 1 1 A VAL 0.900 1 ATOM 31 C CG2 . VAL 6 6 ? A 5.228 11.281 -6.455 1 1 A VAL 0.900 1 ATOM 32 N N . GLU 7 7 ? A 7.871 13.346 -4.214 1 1 A GLU 0.890 1 ATOM 33 C CA . GLU 7 7 ? A 9.296 13.481 -4.503 1 1 A GLU 0.890 1 ATOM 34 C C . GLU 7 7 ? A 9.791 12.388 -5.442 1 1 A GLU 0.890 1 ATOM 35 O O . GLU 7 7 ? A 10.566 12.596 -6.374 1 1 A GLU 0.890 1 ATOM 36 C CB . GLU 7 7 ? A 10.103 13.398 -3.182 1 1 A GLU 0.890 1 ATOM 37 C CG . GLU 7 7 ? A 11.597 13.792 -3.289 1 1 A GLU 0.890 1 ATOM 38 C CD . GLU 7 7 ? A 11.786 15.305 -3.383 1 1 A GLU 0.890 1 ATOM 39 O OE1 . GLU 7 7 ? A 11.677 15.853 -4.507 1 1 A GLU 0.890 1 ATOM 40 O OE2 . GLU 7 7 ? A 12.054 15.919 -2.318 1 1 A GLU 0.890 1 ATOM 41 N N . LYS 8 8 ? A 9.326 11.148 -5.205 1 1 A LYS 0.890 1 ATOM 42 C CA . LYS 8 8 ? A 9.613 10.022 -6.058 1 1 A LYS 0.890 1 ATOM 43 C C . LYS 8 8 ? A 8.346 9.259 -6.364 1 1 A LYS 0.890 1 ATOM 44 O O . LYS 8 8 ? A 7.527 8.988 -5.488 1 1 A LYS 0.890 1 ATOM 45 C CB . LYS 8 8 ? A 10.624 9.060 -5.389 1 1 A LYS 0.890 1 ATOM 46 C CG . LYS 8 8 ? A 11.993 9.723 -5.183 1 1 A LYS 0.890 1 ATOM 47 C CD . LYS 8 8 ? A 13.031 8.796 -4.540 1 1 A LYS 0.890 1 ATOM 48 C CE . LYS 8 8 ? A 14.377 9.500 -4.358 1 1 A LYS 0.890 1 ATOM 49 N NZ . LYS 8 8 ? A 15.352 8.579 -3.735 1 1 A LYS 0.890 1 ATOM 50 N N . GLU 9 9 ? A 8.161 8.877 -7.638 1 1 A GLU 0.890 1 ATOM 51 C CA . GLU 9 9 ? A 7.119 7.976 -8.072 1 1 A GLU 0.890 1 ATOM 52 C C . GLU 9 9 ? A 7.346 6.542 -7.607 1 1 A GLU 0.890 1 ATOM 53 O O . GLU 9 9 ? A 8.351 5.912 -7.930 1 1 A GLU 0.890 1 ATOM 54 C CB . GLU 9 9 ? A 7.057 7.991 -9.613 1 1 A GLU 0.890 1 ATOM 55 C CG . GLU 9 9 ? A 6.515 9.317 -10.190 1 1 A GLU 0.890 1 ATOM 56 C CD . GLU 9 9 ? A 6.954 9.495 -11.639 1 1 A GLU 0.890 1 ATOM 57 O OE1 . GLU 9 9 ? A 6.098 9.311 -12.540 1 1 A GLU 0.890 1 ATOM 58 O OE2 . GLU 9 9 ? A 8.153 9.811 -11.843 1 1 A GLU 0.890 1 ATOM 59 N N . TYR 10 10 ? A 6.395 5.986 -6.827 1 1 A TYR 0.900 1 ATOM 60 C CA . TYR 10 10 ? A 6.412 4.601 -6.364 1 1 A TYR 0.900 1 ATOM 61 C C . TYR 10 10 ? A 7.665 4.166 -5.572 1 1 A TYR 0.900 1 ATOM 62 O O . TYR 10 10 ? A 8.255 3.134 -5.907 1 1 A TYR 0.900 1 ATOM 63 C CB . TYR 10 10 ? A 6.105 3.575 -7.506 1 1 A TYR 0.900 1 ATOM 64 C CG . TYR 10 10 ? A 4.736 3.759 -8.119 1 1 A TYR 0.900 1 ATOM 65 C CD1 . TYR 10 10 ? A 4.514 4.720 -9.120 1 1 A TYR 0.900 1 ATOM 66 C CD2 . TYR 10 10 ? A 3.657 2.952 -7.715 1 1 A TYR 0.900 1 ATOM 67 C CE1 . TYR 10 10 ? A 3.235 4.912 -9.662 1 1 A TYR 0.900 1 ATOM 68 C CE2 . TYR 10 10 ? A 2.378 3.136 -8.263 1 1 A TYR 0.900 1 ATOM 69 C CZ . TYR 10 10 ? A 2.166 4.127 -9.225 1 1 A TYR 0.900 1 ATOM 70 O OH . TYR 10 10 ? A 0.869 4.344 -9.732 1 1 A TYR 0.900 1 ATOM 71 N N . PRO 11 11 ? A 8.116 4.861 -4.516 1 1 A PRO 0.940 1 ATOM 72 C CA . PRO 11 11 ? A 9.427 4.633 -3.905 1 1 A PRO 0.940 1 ATOM 73 C C . PRO 11 11 ? A 9.533 3.304 -3.177 1 1 A PRO 0.940 1 ATOM 74 O O . PRO 11 11 ? A 8.592 2.879 -2.513 1 1 A PRO 0.940 1 ATOM 75 C CB . PRO 11 11 ? A 9.555 5.789 -2.891 1 1 A PRO 0.940 1 ATOM 76 C CG . PRO 11 11 ? A 8.106 6.115 -2.523 1 1 A PRO 0.940 1 ATOM 77 C CD . PRO 11 11 ? A 7.413 5.977 -3.874 1 1 A PRO 0.940 1 ATOM 78 N N . ASN 12 12 ? A 10.670 2.593 -3.261 1 1 A ASN 0.900 1 ATOM 79 C CA . ASN 12 12 ? A 10.858 1.394 -2.464 1 1 A ASN 0.900 1 ATOM 80 C C . ASN 12 12 ? A 10.928 1.661 -0.965 1 1 A ASN 0.900 1 ATOM 81 O O . ASN 12 12 ? A 11.527 2.626 -0.501 1 1 A ASN 0.900 1 ATOM 82 C CB . ASN 12 12 ? A 12.070 0.567 -2.936 1 1 A ASN 0.900 1 ATOM 83 C CG . ASN 12 12 ? A 11.911 0.247 -4.416 1 1 A ASN 0.900 1 ATOM 84 O OD1 . ASN 12 12 ? A 12.704 0.678 -5.249 1 1 A ASN 0.900 1 ATOM 85 N ND2 . ASN 12 12 ? A 10.852 -0.510 -4.783 1 1 A ASN 0.900 1 ATOM 86 N N . ARG 13 13 ? A 10.281 0.792 -0.164 1 1 A ARG 0.850 1 ATOM 87 C CA . ARG 13 13 ? A 10.119 1.013 1.262 1 1 A ARG 0.850 1 ATOM 88 C C . ARG 13 13 ? A 10.827 -0.041 2.087 1 1 A ARG 0.850 1 ATOM 89 O O . ARG 13 13 ? A 10.555 -0.207 3.272 1 1 A ARG 0.850 1 ATOM 90 C CB . ARG 13 13 ? A 8.618 1.018 1.630 1 1 A ARG 0.850 1 ATOM 91 C CG . ARG 13 13 ? A 7.799 2.122 0.931 1 1 A ARG 0.850 1 ATOM 92 C CD . ARG 13 13 ? A 8.236 3.564 1.236 1 1 A ARG 0.850 1 ATOM 93 N NE . ARG 13 13 ? A 8.189 3.771 2.726 1 1 A ARG 0.850 1 ATOM 94 C CZ . ARG 13 13 ? A 7.074 4.011 3.430 1 1 A ARG 0.850 1 ATOM 95 N NH1 . ARG 13 13 ? A 5.880 4.111 2.862 1 1 A ARG 0.850 1 ATOM 96 N NH2 . ARG 13 13 ? A 7.163 4.156 4.752 1 1 A ARG 0.850 1 ATOM 97 N N . GLY 14 14 ? A 11.750 -0.795 1.462 1 1 A GLY 0.920 1 ATOM 98 C CA . GLY 14 14 ? A 12.607 -1.779 2.124 1 1 A GLY 0.920 1 ATOM 99 C C . GLY 14 14 ? A 12.007 -3.143 2.347 1 1 A GLY 0.920 1 ATOM 100 O O . GLY 14 14 ? A 12.743 -4.046 2.718 1 1 A GLY 0.920 1 ATOM 101 N N . ASN 15 15 ? A 10.702 -3.287 2.016 1 1 A ASN 0.890 1 ATOM 102 C CA . ASN 15 15 ? A 9.808 -4.448 2.090 1 1 A ASN 0.890 1 ATOM 103 C C . ASN 15 15 ? A 8.471 -4.099 2.757 1 1 A ASN 0.890 1 ATOM 104 O O . ASN 15 15 ? A 7.508 -4.851 2.666 1 1 A ASN 0.890 1 ATOM 105 C CB . ASN 15 15 ? A 10.390 -5.763 2.710 1 1 A ASN 0.890 1 ATOM 106 C CG . ASN 15 15 ? A 10.587 -5.727 4.229 1 1 A ASN 0.890 1 ATOM 107 O OD1 . ASN 15 15 ? A 10.620 -4.678 4.877 1 1 A ASN 0.890 1 ATOM 108 N ND2 . ASN 15 15 ? A 10.688 -6.927 4.841 1 1 A ASN 0.890 1 ATOM 109 N N . THR 16 16 ? A 8.347 -2.903 3.373 1 1 A THR 0.890 1 ATOM 110 C CA . THR 16 16 ? A 7.124 -2.438 4.042 1 1 A THR 0.890 1 ATOM 111 C C . THR 16 16 ? A 5.890 -2.323 3.160 1 1 A THR 0.890 1 ATOM 112 O O . THR 16 16 ? A 5.829 -1.476 2.270 1 1 A THR 0.890 1 ATOM 113 C CB . THR 16 16 ? A 7.329 -1.075 4.695 1 1 A THR 0.890 1 ATOM 114 O OG1 . THR 16 16 ? A 8.383 -1.162 5.638 1 1 A THR 0.890 1 ATOM 115 C CG2 . THR 16 16 ? A 6.100 -0.578 5.471 1 1 A THR 0.890 1 ATOM 116 N N . CYS 17 17 ? A 4.852 -3.147 3.424 1 1 A CYS 0.920 1 ATOM 117 C CA . CYS 17 17 ? A 3.615 -3.189 2.657 1 1 A CYS 0.920 1 ATOM 118 C C . CYS 17 17 ? A 2.419 -2.971 3.573 1 1 A CYS 0.920 1 ATOM 119 O O . CYS 17 17 ? A 2.200 -3.755 4.492 1 1 A CYS 0.920 1 ATOM 120 C CB . CYS 17 17 ? A 3.440 -4.577 1.986 1 1 A CYS 0.920 1 ATOM 121 S SG . CYS 17 17 ? A 4.764 -4.954 0.799 1 1 A CYS 0.920 1 ATOM 122 N N . LEU 18 18 ? A 1.620 -1.904 3.352 1 1 A LEU 0.870 1 ATOM 123 C CA . LEU 18 18 ? A 0.594 -1.439 4.282 1 1 A LEU 0.870 1 ATOM 124 C C . LEU 18 18 ? A -0.713 -1.166 3.549 1 1 A LEU 0.870 1 ATOM 125 O O . LEU 18 18 ? A -0.737 -0.880 2.349 1 1 A LEU 0.870 1 ATOM 126 C CB . LEU 18 18 ? A 1.033 -0.105 4.962 1 1 A LEU 0.870 1 ATOM 127 C CG . LEU 18 18 ? A 1.635 -0.216 6.381 1 1 A LEU 0.870 1 ATOM 128 C CD1 . LEU 18 18 ? A 2.717 -1.291 6.522 1 1 A LEU 0.870 1 ATOM 129 C CD2 . LEU 18 18 ? A 2.197 1.148 6.811 1 1 A LEU 0.870 1 ATOM 130 N N . GLU 19 19 ? A -1.840 -1.211 4.285 1 1 A GLU 0.840 1 ATOM 131 C CA . GLU 19 19 ? A -3.186 -0.987 3.793 1 1 A GLU 0.840 1 ATOM 132 C C . GLU 19 19 ? A -3.771 0.322 4.314 1 1 A GLU 0.840 1 ATOM 133 O O . GLU 19 19 ? A -4.925 0.665 4.037 1 1 A GLU 0.840 1 ATOM 134 C CB . GLU 19 19 ? A -4.104 -2.169 4.221 1 1 A GLU 0.840 1 ATOM 135 C CG . GLU 19 19 ? A -4.498 -2.274 5.722 1 1 A GLU 0.840 1 ATOM 136 C CD . GLU 19 19 ? A -3.313 -2.366 6.683 1 1 A GLU 0.840 1 ATOM 137 O OE1 . GLU 19 19 ? A -2.692 -1.300 6.945 1 1 A GLU 0.840 1 ATOM 138 O OE2 . GLU 19 19 ? A -3.021 -3.482 7.162 1 1 A GLU 0.840 1 ATOM 139 N N . ASN 20 20 ? A -2.983 1.097 5.083 1 1 A ASN 0.840 1 ATOM 140 C CA . ASN 20 20 ? A -3.399 2.318 5.738 1 1 A ASN 0.840 1 ATOM 141 C C . ASN 20 20 ? A -2.301 3.371 5.707 1 1 A ASN 0.840 1 ATOM 142 O O . ASN 20 20 ? A -1.112 3.072 5.629 1 1 A ASN 0.840 1 ATOM 143 C CB . ASN 20 20 ? A -3.701 2.064 7.240 1 1 A ASN 0.840 1 ATOM 144 C CG . ASN 20 20 ? A -4.968 1.240 7.420 1 1 A ASN 0.840 1 ATOM 145 O OD1 . ASN 20 20 ? A -6.048 1.604 6.937 1 1 A ASN 0.840 1 ATOM 146 N ND2 . ASN 20 20 ? A -4.860 0.115 8.154 1 1 A ASN 0.840 1 ATOM 147 N N . GLY 21 21 ? A -2.710 4.651 5.859 1 1 A GLY 0.840 1 ATOM 148 C CA . GLY 21 21 ? A -1.815 5.780 6.074 1 1 A GLY 0.840 1 ATOM 149 C C . GLY 21 21 ? A -1.261 6.448 4.849 1 1 A GLY 0.840 1 ATOM 150 O O . GLY 21 21 ? A -1.395 5.993 3.717 1 1 A GLY 0.840 1 ATOM 151 N N . SER 22 22 ? A -0.595 7.589 5.088 1 1 A SER 0.800 1 ATOM 152 C CA . SER 22 22 ? A -0.022 8.415 4.045 1 1 A SER 0.800 1 ATOM 153 C C . SER 22 22 ? A 1.447 8.632 4.258 1 1 A SER 0.800 1 ATOM 154 O O . SER 22 22 ? A 1.911 8.899 5.367 1 1 A SER 0.800 1 ATOM 155 C CB . SER 22 22 ? A -0.666 9.813 3.998 1 1 A SER 0.800 1 ATOM 156 O OG . SER 22 22 ? A -1.238 10.011 2.721 1 1 A SER 0.800 1 ATOM 157 N N . PHE 23 23 ? A 2.257 8.550 3.191 1 1 A PHE 0.840 1 ATOM 158 C CA . PHE 23 23 ? A 3.689 8.711 3.331 1 1 A PHE 0.840 1 ATOM 159 C C . PHE 23 23 ? A 4.095 10.179 3.217 1 1 A PHE 0.840 1 ATOM 160 O O . PHE 23 23 ? A 4.554 10.656 2.182 1 1 A PHE 0.840 1 ATOM 161 C CB . PHE 23 23 ? A 4.423 7.800 2.316 1 1 A PHE 0.840 1 ATOM 162 C CG . PHE 23 23 ? A 5.905 7.614 2.552 1 1 A PHE 0.840 1 ATOM 163 C CD1 . PHE 23 23 ? A 6.523 7.703 3.817 1 1 A PHE 0.840 1 ATOM 164 C CD2 . PHE 23 23 ? A 6.700 7.288 1.442 1 1 A PHE 0.840 1 ATOM 165 C CE1 . PHE 23 23 ? A 7.904 7.497 3.951 1 1 A PHE 0.840 1 ATOM 166 C CE2 . PHE 23 23 ? A 8.080 7.105 1.569 1 1 A PHE 0.840 1 ATOM 167 C CZ . PHE 23 23 ? A 8.684 7.212 2.825 1 1 A PHE 0.840 1 ATOM 168 N N . LEU 24 24 ? A 3.968 10.936 4.327 1 1 A LEU 0.850 1 ATOM 169 C CA . LEU 24 24 ? A 4.220 12.371 4.388 1 1 A LEU 0.850 1 ATOM 170 C C . LEU 24 24 ? A 5.644 12.784 4.030 1 1 A LEU 0.850 1 ATOM 171 O O . LEU 24 24 ? A 5.889 13.883 3.536 1 1 A LEU 0.850 1 ATOM 172 C CB . LEU 24 24 ? A 3.865 12.949 5.780 1 1 A LEU 0.850 1 ATOM 173 C CG . LEU 24 24 ? A 2.416 12.686 6.244 1 1 A LEU 0.850 1 ATOM 174 C CD1 . LEU 24 24 ? A 2.164 13.356 7.603 1 1 A LEU 0.850 1 ATOM 175 C CD2 . LEU 24 24 ? A 1.370 13.176 5.234 1 1 A LEU 0.850 1 ATOM 176 N N . LEU 25 25 ? A 6.621 11.885 4.243 1 1 A LEU 0.840 1 ATOM 177 C CA . LEU 25 25 ? A 8.005 12.077 3.858 1 1 A LEU 0.840 1 ATOM 178 C C . LEU 25 25 ? A 8.244 12.040 2.348 1 1 A LEU 0.840 1 ATOM 179 O O . LEU 25 25 ? A 9.217 12.617 1.878 1 1 A LEU 0.840 1 ATOM 180 C CB . LEU 25 25 ? A 8.887 11.009 4.549 1 1 A LEU 0.840 1 ATOM 181 C CG . LEU 25 25 ? A 9.043 11.200 6.074 1 1 A LEU 0.840 1 ATOM 182 C CD1 . LEU 25 25 ? A 9.598 9.929 6.737 1 1 A LEU 0.840 1 ATOM 183 C CD2 . LEU 25 25 ? A 9.953 12.395 6.394 1 1 A LEU 0.840 1 ATOM 184 N N . ASN 26 26 ? A 7.356 11.408 1.546 1 1 A ASN 0.870 1 ATOM 185 C CA . ASN 26 26 ? A 7.456 11.457 0.092 1 1 A ASN 0.870 1 ATOM 186 C C . ASN 26 26 ? A 6.476 12.476 -0.478 1 1 A ASN 0.870 1 ATOM 187 O O . ASN 26 26 ? A 6.647 12.955 -1.595 1 1 A ASN 0.870 1 ATOM 188 C CB . ASN 26 26 ? A 7.176 10.044 -0.494 1 1 A ASN 0.870 1 ATOM 189 C CG . ASN 26 26 ? A 7.473 9.941 -1.990 1 1 A ASN 0.870 1 ATOM 190 O OD1 . ASN 26 26 ? A 8.493 10.418 -2.488 1 1 A ASN 0.870 1 ATOM 191 N ND2 . ASN 26 26 ? A 6.585 9.258 -2.742 1 1 A ASN 0.870 1 ATOM 192 N N . PHE 27 27 ? A 5.437 12.876 0.284 1 1 A PHE 0.860 1 ATOM 193 C CA . PHE 27 27 ? A 4.543 13.948 -0.115 1 1 A PHE 0.860 1 ATOM 194 C C . PHE 27 27 ? A 5.209 15.308 0.064 1 1 A PHE 0.860 1 ATOM 195 O O . PHE 27 27 ? A 5.438 15.773 1.181 1 1 A PHE 0.860 1 ATOM 196 C CB . PHE 27 27 ? A 3.222 13.895 0.707 1 1 A PHE 0.860 1 ATOM 197 C CG . PHE 27 27 ? A 2.199 14.921 0.284 1 1 A PHE 0.860 1 ATOM 198 C CD1 . PHE 27 27 ? A 1.756 15.000 -1.046 1 1 A PHE 0.860 1 ATOM 199 C CD2 . PHE 27 27 ? A 1.621 15.770 1.243 1 1 A PHE 0.860 1 ATOM 200 C CE1 . PHE 27 27 ? A 0.783 15.936 -1.420 1 1 A PHE 0.860 1 ATOM 201 C CE2 . PHE 27 27 ? A 0.608 16.666 0.880 1 1 A PHE 0.860 1 ATOM 202 C CZ . PHE 27 27 ? A 0.202 16.763 -0.453 1 1 A PHE 0.860 1 ATOM 203 N N . THR 28 28 ? A 5.506 16.007 -1.041 1 1 A THR 0.900 1 ATOM 204 C CA . THR 28 28 ? A 6.211 17.284 -1.039 1 1 A THR 0.900 1 ATOM 205 C C . THR 28 28 ? A 5.238 18.439 -1.024 1 1 A THR 0.900 1 ATOM 206 O O . THR 28 28 ? A 5.614 19.580 -0.762 1 1 A THR 0.900 1 ATOM 207 C CB . THR 28 28 ? A 7.091 17.433 -2.273 1 1 A THR 0.900 1 ATOM 208 O OG1 . THR 28 28 ? A 6.388 16.991 -3.426 1 1 A THR 0.900 1 ATOM 209 C CG2 . THR 28 28 ? A 8.312 16.524 -2.110 1 1 A THR 0.900 1 ATOM 210 N N . GLY 29 29 ? A 3.936 18.154 -1.214 1 1 A GLY 0.900 1 ATOM 211 C CA . GLY 29 29 ? A 2.884 19.155 -1.298 1 1 A GLY 0.900 1 ATOM 212 C C . GLY 29 29 ? A 2.202 19.116 -2.637 1 1 A GLY 0.900 1 ATOM 213 O O . GLY 29 29 ? A 2.791 18.826 -3.668 1 1 A GLY 0.900 1 ATOM 214 N N . CYS 30 30 ? A 0.892 19.381 -2.675 1 1 A CYS 0.890 1 ATOM 215 C CA . CYS 30 30 ? A 0.098 19.340 -3.891 1 1 A CYS 0.890 1 ATOM 216 C C . CYS 30 30 ? A 0.450 20.384 -4.951 1 1 A CYS 0.890 1 ATOM 217 O O . CYS 30 30 ? A 0.588 21.557 -4.625 1 1 A CYS 0.890 1 ATOM 218 C CB . CYS 30 30 ? A -1.389 19.538 -3.498 1 1 A CYS 0.890 1 ATOM 219 S SG . CYS 30 30 ? A -2.586 19.153 -4.814 1 1 A CYS 0.890 1 ATOM 220 N N . ALA 31 31 ? A 0.492 20.067 -6.260 1 1 A ALA 0.890 1 ATOM 221 C CA . ALA 31 31 ? A 0.746 21.086 -7.274 1 1 A ALA 0.890 1 ATOM 222 C C . ALA 31 31 ? A -0.520 21.664 -7.912 1 1 A ALA 0.890 1 ATOM 223 O O . ALA 31 31 ? A -0.459 22.612 -8.685 1 1 A ALA 0.890 1 ATOM 224 C CB . ALA 31 31 ? A 1.695 20.541 -8.352 1 1 A ALA 0.890 1 ATOM 225 N N . VAL 32 32 ? A -1.725 21.162 -7.550 1 1 A VAL 0.900 1 ATOM 226 C CA . VAL 32 32 ? A -2.990 21.809 -7.917 1 1 A VAL 0.900 1 ATOM 227 C C . VAL 32 32 ? A -3.257 23.022 -7.028 1 1 A VAL 0.900 1 ATOM 228 O O . VAL 32 32 ? A -3.968 23.950 -7.403 1 1 A VAL 0.900 1 ATOM 229 C CB . VAL 32 32 ? A -4.172 20.826 -7.866 1 1 A VAL 0.900 1 ATOM 230 C CG1 . VAL 32 32 ? A -5.546 21.509 -8.064 1 1 A VAL 0.900 1 ATOM 231 C CG2 . VAL 32 32 ? A -3.985 19.783 -8.982 1 1 A VAL 0.900 1 ATOM 232 N N . CYS 33 33 ? A -2.665 23.072 -5.814 1 1 A CYS 0.900 1 ATOM 233 C CA . CYS 33 33 ? A -2.999 24.135 -4.877 1 1 A CYS 0.900 1 ATOM 234 C C . CYS 33 33 ? A -1.907 24.521 -3.892 1 1 A CYS 0.900 1 ATOM 235 O O . CYS 33 33 ? A -2.116 25.398 -3.058 1 1 A CYS 0.900 1 ATOM 236 C CB . CYS 33 33 ? A -4.238 23.711 -4.040 1 1 A CYS 0.900 1 ATOM 237 S SG . CYS 33 33 ? A -3.946 22.261 -2.956 1 1 A CYS 0.900 1 ATOM 238 N N . SER 34 34 ? A -0.726 23.882 -3.947 1 1 A SER 0.890 1 ATOM 239 C CA . SER 34 34 ? A 0.433 24.174 -3.107 1 1 A SER 0.890 1 ATOM 240 C C . SER 34 34 ? A 0.227 23.971 -1.611 1 1 A SER 0.890 1 ATOM 241 O O . SER 34 34 ? A 0.750 24.704 -0.773 1 1 A SER 0.890 1 ATOM 242 C CB . SER 34 34 ? A 1.054 25.550 -3.442 1 1 A SER 0.890 1 ATOM 243 O OG . SER 34 34 ? A 2.473 25.525 -3.291 1 1 A SER 0.890 1 ATOM 244 N N . LYS 35 35 ? A -0.533 22.932 -1.209 1 1 A LYS 0.870 1 ATOM 245 C CA . LYS 35 35 ? A -0.716 22.570 0.187 1 1 A LYS 0.870 1 ATOM 246 C C . LYS 35 35 ? A -0.055 21.242 0.503 1 1 A LYS 0.870 1 ATOM 247 O O . LYS 35 35 ? A -0.190 20.258 -0.226 1 1 A LYS 0.870 1 ATOM 248 C CB . LYS 35 35 ? A -2.206 22.493 0.610 1 1 A LYS 0.870 1 ATOM 249 C CG . LYS 35 35 ? A -2.835 23.882 0.824 1 1 A LYS 0.870 1 ATOM 250 C CD . LYS 35 35 ? A -3.444 24.015 2.233 1 1 A LYS 0.870 1 ATOM 251 C CE . LYS 35 35 ? A -3.736 25.442 2.718 1 1 A LYS 0.870 1 ATOM 252 N NZ . LYS 35 35 ? A -4.664 26.130 1.802 1 1 A LYS 0.870 1 ATOM 253 N N . ARG 36 36 ? A 0.674 21.205 1.634 1 1 A ARG 0.820 1 ATOM 254 C CA . ARG 36 36 ? A 1.320 20.041 2.197 1 1 A ARG 0.820 1 ATOM 255 C C . ARG 36 36 ? A 0.513 19.616 3.417 1 1 A ARG 0.820 1 ATOM 256 O O . ARG 36 36 ? A -0.430 20.318 3.768 1 1 A ARG 0.820 1 ATOM 257 C CB . ARG 36 36 ? A 2.808 20.338 2.505 1 1 A ARG 0.820 1 ATOM 258 C CG . ARG 36 36 ? A 3.666 19.080 2.738 1 1 A ARG 0.820 1 ATOM 259 C CD . ARG 36 36 ? A 5.171 19.329 2.656 1 1 A ARG 0.820 1 ATOM 260 N NE . ARG 36 36 ? A 5.802 17.971 2.746 1 1 A ARG 0.820 1 ATOM 261 C CZ . ARG 36 36 ? A 6.923 17.662 3.402 1 1 A ARG 0.820 1 ATOM 262 N NH1 . ARG 36 36 ? A 7.622 18.581 4.055 1 1 A ARG 0.820 1 ATOM 263 N NH2 . ARG 36 36 ? A 7.342 16.399 3.384 1 1 A ARG 0.820 1 ATOM 264 N N . ASP 37 37 ? A 0.786 18.408 3.981 1 1 A ASP 0.870 1 ATOM 265 C CA . ASP 37 37 ? A 0.178 17.779 5.159 1 1 A ASP 0.870 1 ATOM 266 C C . ASP 37 37 ? A -1.352 17.647 5.181 1 1 A ASP 0.870 1 ATOM 267 O O . ASP 37 37 ? A -1.973 17.199 6.144 1 1 A ASP 0.870 1 ATOM 268 C CB . ASP 37 37 ? A 0.837 18.232 6.496 1 1 A ASP 0.870 1 ATOM 269 C CG . ASP 37 37 ? A 1.003 19.739 6.616 1 1 A ASP 0.870 1 ATOM 270 O OD1 . ASP 37 37 ? A 0.115 20.395 7.212 1 1 A ASP 0.870 1 ATOM 271 O OD2 . ASP 37 37 ? A 2.057 20.232 6.126 1 1 A ASP 0.870 1 ATOM 272 N N . PHE 38 38 ? A -1.990 17.945 4.041 1 1 A PHE 0.860 1 ATOM 273 C CA . PHE 38 38 ? A -3.413 18.087 3.900 1 1 A PHE 0.860 1 ATOM 274 C C . PHE 38 38 ? A -3.960 16.980 3.013 1 1 A PHE 0.860 1 ATOM 275 O O . PHE 38 38 ? A -3.988 17.118 1.787 1 1 A PHE 0.860 1 ATOM 276 C CB . PHE 38 38 ? A -3.666 19.456 3.190 1 1 A PHE 0.860 1 ATOM 277 C CG . PHE 38 38 ? A -4.072 20.545 4.142 1 1 A PHE 0.860 1 ATOM 278 C CD1 . PHE 38 38 ? A -3.271 20.916 5.234 1 1 A PHE 0.860 1 ATOM 279 C CD2 . PHE 38 38 ? A -5.267 21.246 3.912 1 1 A PHE 0.860 1 ATOM 280 C CE1 . PHE 38 38 ? A -3.661 21.962 6.079 1 1 A PHE 0.860 1 ATOM 281 C CE2 . PHE 38 38 ? A -5.665 22.289 4.754 1 1 A PHE 0.860 1 ATOM 282 C CZ . PHE 38 38 ? A -4.859 22.647 5.842 1 1 A PHE 0.860 1 ATOM 283 N N . MET 39 39 ? A -4.496 15.885 3.592 1 1 A MET 0.860 1 ATOM 284 C CA . MET 39 39 ? A -4.962 14.773 2.785 1 1 A MET 0.860 1 ATOM 285 C C . MET 39 39 ? A -5.976 13.840 3.467 1 1 A MET 0.860 1 ATOM 286 O O . MET 39 39 ? A -6.080 13.823 4.690 1 1 A MET 0.860 1 ATOM 287 C CB . MET 39 39 ? A -3.747 13.999 2.240 1 1 A MET 0.860 1 ATOM 288 C CG . MET 39 39 ? A -2.706 13.506 3.261 1 1 A MET 0.860 1 ATOM 289 S SD . MET 39 39 ? A -1.007 14.042 2.904 1 1 A MET 0.860 1 ATOM 290 C CE . MET 39 39 ? A -0.809 13.194 1.313 1 1 A MET 0.860 1 ATOM 291 N N . LEU 40 40 ? A -6.789 13.094 2.666 1 1 A LEU 0.860 1 ATOM 292 C CA . LEU 40 40 ? A -7.997 12.361 3.064 1 1 A LEU 0.860 1 ATOM 293 C C . LEU 40 40 ? A -8.186 11.066 2.264 1 1 A LEU 0.860 1 ATOM 294 O O . LEU 40 40 ? A -7.988 11.045 1.052 1 1 A LEU 0.860 1 ATOM 295 C CB . LEU 40 40 ? A -9.244 13.226 2.700 1 1 A LEU 0.860 1 ATOM 296 C CG . LEU 40 40 ? A -10.013 13.901 3.851 1 1 A LEU 0.860 1 ATOM 297 C CD1 . LEU 40 40 ? A -10.942 12.911 4.567 1 1 A LEU 0.860 1 ATOM 298 C CD2 . LEU 40 40 ? A -9.108 14.630 4.845 1 1 A LEU 0.860 1 ATOM 299 N N . ILE 41 41 ? A -8.648 9.951 2.863 1 1 A ILE 0.850 1 ATOM 300 C CA . ILE 41 41 ? A -8.804 8.680 2.156 1 1 A ILE 0.850 1 ATOM 301 C C . ILE 41 41 ? A -10.247 8.469 1.715 1 1 A ILE 0.850 1 ATOM 302 O O . ILE 41 41 ? A -11.178 8.661 2.491 1 1 A ILE 0.850 1 ATOM 303 C CB . ILE 41 41 ? A -8.284 7.503 2.991 1 1 A ILE 0.850 1 ATOM 304 C CG1 . ILE 41 41 ? A -6.745 7.631 3.068 1 1 A ILE 0.850 1 ATOM 305 C CG2 . ILE 41 41 ? A -8.708 6.136 2.398 1 1 A ILE 0.850 1 ATOM 306 C CD1 . ILE 41 41 ? A -6.030 6.624 3.977 1 1 A ILE 0.850 1 ATOM 307 N N . THR 42 42 ? A -10.492 8.056 0.445 1 1 A THR 0.870 1 ATOM 308 C CA . THR 42 42 ? A -11.846 7.725 0.006 1 1 A THR 0.870 1 ATOM 309 C C . THR 42 42 ? A -11.850 6.606 -1.023 1 1 A THR 0.870 1 ATOM 310 O O . THR 42 42 ? A -10.811 6.197 -1.546 1 1 A THR 0.870 1 ATOM 311 C CB . THR 42 42 ? A -12.671 8.919 -0.486 1 1 A THR 0.870 1 ATOM 312 O OG1 . THR 42 42 ? A -14.065 8.628 -0.474 1 1 A THR 0.870 1 ATOM 313 C CG2 . THR 42 42 ? A -12.297 9.344 -1.913 1 1 A THR 0.870 1 ATOM 314 N N . ASN 43 43 ? A -13.052 6.055 -1.283 1 1 A ASN 0.860 1 ATOM 315 C CA . ASN 43 43 ? A -13.393 4.959 -2.182 1 1 A ASN 0.860 1 ATOM 316 C C . ASN 43 43 ? A -12.646 3.647 -1.915 1 1 A ASN 0.860 1 ATOM 317 O O . ASN 43 43 ? A -12.337 2.859 -2.803 1 1 A ASN 0.860 1 ATOM 318 C CB . ASN 43 43 ? A -13.559 5.435 -3.666 1 1 A ASN 0.860 1 ATOM 319 C CG . ASN 43 43 ? A -12.477 5.062 -4.679 1 1 A ASN 0.860 1 ATOM 320 O OD1 . ASN 43 43 ? A -12.806 4.649 -5.790 1 1 A ASN 0.860 1 ATOM 321 N ND2 . ASN 43 43 ? A -11.188 5.215 -4.329 1 1 A ASN 0.860 1 ATOM 322 N N . LYS 44 44 ? A -12.340 3.375 -0.636 1 1 A LYS 0.840 1 ATOM 323 C CA . LYS 44 44 ? A -11.530 2.241 -0.241 1 1 A LYS 0.840 1 ATOM 324 C C . LYS 44 44 ? A -12.214 0.890 -0.423 1 1 A LYS 0.840 1 ATOM 325 O O . LYS 44 44 ? A -13.198 0.577 0.243 1 1 A LYS 0.840 1 ATOM 326 C CB . LYS 44 44 ? A -11.063 2.432 1.221 1 1 A LYS 0.840 1 ATOM 327 C CG . LYS 44 44 ? A -10.027 1.398 1.688 1 1 A LYS 0.840 1 ATOM 328 C CD . LYS 44 44 ? A -9.381 1.788 3.030 1 1 A LYS 0.840 1 ATOM 329 C CE . LYS 44 44 ? A -8.138 0.952 3.353 1 1 A LYS 0.840 1 ATOM 330 N NZ . LYS 44 44 ? A -7.452 1.438 4.564 1 1 A LYS 0.840 1 ATOM 331 N N . SER 45 45 ? A -11.679 0.054 -1.334 1 1 A SER 0.880 1 ATOM 332 C CA . SER 45 45 ? A -12.257 -1.231 -1.691 1 1 A SER 0.880 1 ATOM 333 C C . SER 45 45 ? A -11.426 -2.353 -1.115 1 1 A SER 0.880 1 ATOM 334 O O . SER 45 45 ? A -10.243 -2.206 -0.804 1 1 A SER 0.880 1 ATOM 335 C CB . SER 45 45 ? A -12.335 -1.464 -3.225 1 1 A SER 0.880 1 ATOM 336 O OG . SER 45 45 ? A -13.448 -0.783 -3.802 1 1 A SER 0.880 1 ATOM 337 N N . LEU 46 46 ? A -12.042 -3.537 -0.972 1 1 A LEU 0.900 1 ATOM 338 C CA . LEU 46 46 ? A -11.399 -4.718 -0.450 1 1 A LEU 0.900 1 ATOM 339 C C . LEU 46 46 ? A -11.930 -5.887 -1.253 1 1 A LEU 0.900 1 ATOM 340 O O . LEU 46 46 ? A -13.074 -5.877 -1.705 1 1 A LEU 0.900 1 ATOM 341 C CB . LEU 46 46 ? A -11.661 -4.863 1.076 1 1 A LEU 0.900 1 ATOM 342 C CG . LEU 46 46 ? A -11.176 -6.169 1.751 1 1 A LEU 0.900 1 ATOM 343 C CD1 . LEU 46 46 ? A -10.588 -5.899 3.145 1 1 A LEU 0.900 1 ATOM 344 C CD2 . LEU 46 46 ? A -12.303 -7.210 1.866 1 1 A LEU 0.900 1 ATOM 345 N N . LYS 47 47 ? A -11.088 -6.903 -1.503 1 1 A LYS 0.890 1 ATOM 346 C CA . LYS 47 47 ? A -11.457 -8.066 -2.275 1 1 A LYS 0.890 1 ATOM 347 C C . LYS 47 47 ? A -10.744 -9.267 -1.676 1 1 A LYS 0.890 1 ATOM 348 O O . LYS 47 47 ? A -9.619 -9.131 -1.201 1 1 A LYS 0.890 1 ATOM 349 C CB . LYS 47 47 ? A -11.008 -7.890 -3.750 1 1 A LYS 0.890 1 ATOM 350 C CG . LYS 47 47 ? A -11.805 -8.725 -4.762 1 1 A LYS 0.890 1 ATOM 351 C CD . LYS 47 47 ? A -11.070 -8.865 -6.108 1 1 A LYS 0.890 1 ATOM 352 C CE . LYS 47 47 ? A -11.924 -9.521 -7.202 1 1 A LYS 0.890 1 ATOM 353 N NZ . LYS 47 47 ? A -11.072 -9.981 -8.317 1 1 A LYS 0.890 1 ATOM 354 N N . GLU 48 48 ? A -11.366 -10.462 -1.669 1 1 A GLU 0.860 1 ATOM 355 C CA . GLU 48 48 ? A -10.749 -11.669 -1.147 1 1 A GLU 0.860 1 ATOM 356 C C . GLU 48 48 ? A -10.917 -12.802 -2.150 1 1 A GLU 0.860 1 ATOM 357 O O . GLU 48 48 ? A -12.030 -13.064 -2.606 1 1 A GLU 0.860 1 ATOM 358 C CB . GLU 48 48 ? A -11.402 -12.113 0.180 1 1 A GLU 0.860 1 ATOM 359 C CG . GLU 48 48 ? A -11.274 -11.091 1.332 1 1 A GLU 0.860 1 ATOM 360 C CD . GLU 48 48 ? A -12.129 -11.531 2.516 1 1 A GLU 0.860 1 ATOM 361 O OE1 . GLU 48 48 ? A -11.935 -12.682 2.986 1 1 A GLU 0.860 1 ATOM 362 O OE2 . GLU 48 48 ? A -13.014 -10.735 2.925 1 1 A GLU 0.860 1 ATOM 363 N N . GLU 49 49 ? A -9.827 -13.497 -2.544 1 1 A GLU 0.900 1 ATOM 364 C CA . GLU 49 49 ? A -9.895 -14.622 -3.470 1 1 A GLU 0.900 1 ATOM 365 C C . GLU 49 49 ? A -9.011 -15.749 -2.971 1 1 A GLU 0.900 1 ATOM 366 O O . GLU 49 49 ? A -7.799 -15.604 -2.891 1 1 A GLU 0.900 1 ATOM 367 C CB . GLU 49 49 ? A -9.467 -14.227 -4.912 1 1 A GLU 0.900 1 ATOM 368 C CG . GLU 49 49 ? A -10.488 -13.261 -5.556 1 1 A GLU 0.900 1 ATOM 369 C CD . GLU 49 49 ? A -10.182 -12.851 -6.989 1 1 A GLU 0.900 1 ATOM 370 O OE1 . GLU 49 49 ? A -10.654 -13.510 -7.944 1 1 A GLU 0.900 1 ATOM 371 O OE2 . GLU 49 49 ? A -9.616 -11.737 -7.153 1 1 A GLU 0.900 1 ATOM 372 N N . ASP 50 50 ? A -9.592 -16.906 -2.585 1 1 A ASP 0.920 1 ATOM 373 C CA . ASP 50 50 ? A -8.872 -18.126 -2.231 1 1 A ASP 0.920 1 ATOM 374 C C . ASP 50 50 ? A -7.793 -17.988 -1.134 1 1 A ASP 0.920 1 ATOM 375 O O . ASP 50 50 ? A -6.795 -18.700 -1.081 1 1 A ASP 0.920 1 ATOM 376 C CB . ASP 50 50 ? A -8.376 -18.808 -3.539 1 1 A ASP 0.920 1 ATOM 377 C CG . ASP 50 50 ? A -8.427 -20.325 -3.439 1 1 A ASP 0.920 1 ATOM 378 O OD1 . ASP 50 50 ? A -9.465 -20.824 -2.929 1 1 A ASP 0.920 1 ATOM 379 O OD2 . ASP 50 50 ? A -7.474 -20.992 -3.911 1 1 A ASP 0.920 1 ATOM 380 N N . GLY 51 51 ? A -7.988 -17.054 -0.175 1 1 A GLY 0.910 1 ATOM 381 C CA . GLY 51 51 ? A -6.987 -16.751 0.849 1 1 A GLY 0.910 1 ATOM 382 C C . GLY 51 51 ? A -6.025 -15.643 0.482 1 1 A GLY 0.910 1 ATOM 383 O O . GLY 51 51 ? A -5.166 -15.288 1.285 1 1 A GLY 0.910 1 ATOM 384 N N . GLU 52 52 ? A -6.158 -15.037 -0.713 1 1 A GLU 0.880 1 ATOM 385 C CA . GLU 52 52 ? A -5.554 -13.754 -1.036 1 1 A GLU 0.880 1 ATOM 386 C C . GLU 52 52 ? A -6.479 -12.631 -0.576 1 1 A GLU 0.880 1 ATOM 387 O O . GLU 52 52 ? A -7.689 -12.691 -0.785 1 1 A GLU 0.880 1 ATOM 388 C CB . GLU 52 52 ? A -5.262 -13.584 -2.559 1 1 A GLU 0.880 1 ATOM 389 C CG . GLU 52 52 ? A -4.582 -12.235 -2.938 1 1 A GLU 0.880 1 ATOM 390 C CD . GLU 52 52 ? A -4.261 -12.023 -4.421 1 1 A GLU 0.880 1 ATOM 391 O OE1 . GLU 52 52 ? A -4.589 -12.895 -5.260 1 1 A GLU 0.880 1 ATOM 392 O OE2 . GLU 52 52 ? A -3.672 -10.943 -4.714 1 1 A GLU 0.880 1 ATOM 393 N N . GLU 53 53 ? A -5.925 -11.581 0.061 1 1 A GLU 0.880 1 ATOM 394 C CA . GLU 53 53 ? A -6.640 -10.399 0.509 1 1 A GLU 0.880 1 ATOM 395 C C . GLU 53 53 ? A -6.085 -9.194 -0.235 1 1 A GLU 0.880 1 ATOM 396 O O . GLU 53 53 ? A -4.879 -8.958 -0.276 1 1 A GLU 0.880 1 ATOM 397 C CB . GLU 53 53 ? A -6.460 -10.118 2.023 1 1 A GLU 0.880 1 ATOM 398 C CG . GLU 53 53 ? A -7.008 -11.208 2.974 1 1 A GLU 0.880 1 ATOM 399 C CD . GLU 53 53 ? A -6.658 -10.867 4.422 1 1 A GLU 0.880 1 ATOM 400 O OE1 . GLU 53 53 ? A -6.995 -9.735 4.859 1 1 A GLU 0.880 1 ATOM 401 O OE2 . GLU 53 53 ? A -6.018 -11.718 5.094 1 1 A GLU 0.880 1 ATOM 402 N N . ILE 54 54 ? A -6.953 -8.387 -0.866 1 1 A ILE 0.890 1 ATOM 403 C CA . ILE 54 54 ? A -6.551 -7.249 -1.677 1 1 A ILE 0.890 1 ATOM 404 C C . ILE 54 54 ? A -7.227 -6.002 -1.141 1 1 A ILE 0.890 1 ATOM 405 O O . ILE 54 54 ? A -8.428 -6.002 -0.884 1 1 A ILE 0.890 1 ATOM 406 C CB . ILE 54 54 ? A -6.913 -7.419 -3.156 1 1 A ILE 0.890 1 ATOM 407 C CG1 . ILE 54 54 ? A -6.363 -8.742 -3.743 1 1 A ILE 0.890 1 ATOM 408 C CG2 . ILE 54 54 ? A -6.385 -6.214 -3.969 1 1 A ILE 0.890 1 ATOM 409 C CD1 . ILE 54 54 ? A -7.370 -9.903 -3.750 1 1 A ILE 0.890 1 ATOM 410 N N . VAL 55 55 ? A -6.476 -4.896 -0.957 1 1 A VAL 0.880 1 ATOM 411 C CA . VAL 55 55 ? A -7.013 -3.608 -0.542 1 1 A VAL 0.880 1 ATOM 412 C C . VAL 55 55 ? A -6.587 -2.559 -1.557 1 1 A VAL 0.880 1 ATOM 413 O O . VAL 55 55 ? A -5.396 -2.327 -1.765 1 1 A VAL 0.880 1 ATOM 414 C CB . VAL 55 55 ? A -6.505 -3.180 0.835 1 1 A VAL 0.880 1 ATOM 415 C CG1 . VAL 55 55 ? A -7.135 -1.835 1.253 1 1 A VAL 0.880 1 ATOM 416 C CG2 . VAL 55 55 ? A -6.844 -4.270 1.872 1 1 A VAL 0.880 1 ATOM 417 N N . THR 56 56 ? A -7.543 -1.878 -2.218 1 1 A THR 0.860 1 ATOM 418 C CA . THR 56 56 ? A -7.247 -0.855 -3.221 1 1 A THR 0.860 1 ATOM 419 C C . THR 56 56 ? A -7.915 0.443 -2.840 1 1 A THR 0.860 1 ATOM 420 O O . THR 56 56 ? A -9.045 0.473 -2.351 1 1 A THR 0.860 1 ATOM 421 C CB . THR 56 56 ? A -7.637 -1.199 -4.662 1 1 A THR 0.860 1 ATOM 422 O OG1 . THR 56 56 ? A -9.011 -1.540 -4.797 1 1 A THR 0.860 1 ATOM 423 C CG2 . THR 56 56 ? A -6.833 -2.415 -5.129 1 1 A THR 0.860 1 ATOM 424 N N . TYR 57 57 ? A -7.216 1.579 -3.010 1 1 A TYR 0.840 1 ATOM 425 C CA . TYR 57 57 ? A -7.801 2.871 -2.750 1 1 A TYR 0.840 1 ATOM 426 C C . TYR 57 57 ? A -7.198 3.945 -3.682 1 1 A TYR 0.840 1 ATOM 427 O O . TYR 57 57 ? A -5.992 3.971 -3.920 1 1 A TYR 0.840 1 ATOM 428 C CB . TYR 57 57 ? A -7.824 3.160 -1.193 1 1 A TYR 0.840 1 ATOM 429 C CG . TYR 57 57 ? A -6.527 3.305 -0.396 1 1 A TYR 0.840 1 ATOM 430 C CD1 . TYR 57 57 ? A -5.578 2.291 -0.129 1 1 A TYR 0.840 1 ATOM 431 C CD2 . TYR 57 57 ? A -6.323 4.531 0.239 1 1 A TYR 0.840 1 ATOM 432 C CE1 . TYR 57 57 ? A -4.482 2.543 0.725 1 1 A TYR 0.840 1 ATOM 433 C CE2 . TYR 57 57 ? A -5.145 4.844 0.917 1 1 A TYR 0.840 1 ATOM 434 C CZ . TYR 57 57 ? A -4.232 3.838 1.189 1 1 A TYR 0.840 1 ATOM 435 O OH . TYR 57 57 ? A -3.084 4.122 1.951 1 1 A TYR 0.840 1 ATOM 436 N N . ASP 58 58 ? A -8.013 4.894 -4.222 1 1 A ASP 0.790 1 ATOM 437 C CA . ASP 58 58 ? A -7.556 6.024 -5.040 1 1 A ASP 0.790 1 ATOM 438 C C . ASP 58 58 ? A -7.213 7.351 -4.281 1 1 A ASP 0.790 1 ATOM 439 O O . ASP 58 58 ? A -7.766 8.367 -4.704 1 1 A ASP 0.790 1 ATOM 440 C CB . ASP 58 58 ? A -8.592 6.373 -6.181 1 1 A ASP 0.790 1 ATOM 441 C CG . ASP 58 58 ? A -8.657 5.395 -7.345 1 1 A ASP 0.790 1 ATOM 442 O OD1 . ASP 58 58 ? A -8.378 4.195 -7.161 1 1 A ASP 0.790 1 ATOM 443 O OD2 . ASP 58 58 ? A -8.896 5.903 -8.479 1 1 A ASP 0.790 1 ATOM 444 N N . PRO 59 59 ? A -6.376 7.540 -3.237 1 1 A PRO 0.770 1 ATOM 445 C CA . PRO 59 59 ? A -6.155 8.899 -2.769 1 1 A PRO 0.770 1 ATOM 446 C C . PRO 59 59 ? A -4.690 8.996 -2.316 1 1 A PRO 0.770 1 ATOM 447 O O . PRO 59 59 ? A -3.839 8.424 -2.993 1 1 A PRO 0.770 1 ATOM 448 C CB . PRO 59 59 ? A -7.246 8.874 -1.691 1 1 A PRO 0.770 1 ATOM 449 C CG . PRO 59 59 ? A -7.003 7.583 -0.956 1 1 A PRO 0.770 1 ATOM 450 C CD . PRO 59 59 ? A -6.433 6.690 -2.049 1 1 A PRO 0.770 1 ATOM 451 N N . ASP 60 60 ? A -4.263 9.646 -1.219 1 1 A ASP 0.370 1 ATOM 452 C CA . ASP 60 60 ? A -4.918 10.560 -0.313 1 1 A ASP 0.370 1 ATOM 453 C C . ASP 60 60 ? A -5.393 11.837 -1.004 1 1 A ASP 0.370 1 ATOM 454 O O . ASP 60 60 ? A -4.601 12.644 -1.465 1 1 A ASP 0.370 1 ATOM 455 C CB . ASP 60 60 ? A -4.188 10.692 1.037 1 1 A ASP 0.370 1 ATOM 456 C CG . ASP 60 60 ? A -4.025 9.364 1.767 1 1 A ASP 0.370 1 ATOM 457 O OD1 . ASP 60 60 ? A -4.152 8.282 1.148 1 1 A ASP 0.370 1 ATOM 458 O OD2 . ASP 60 60 ? A -3.749 9.433 2.992 1 1 A ASP 0.370 1 ATOM 459 N N . LEU 61 61 ? A -6.715 12.074 -1.165 1 1 A LEU 0.840 1 ATOM 460 C CA . LEU 61 61 ? A -7.282 13.256 -1.812 1 1 A LEU 0.840 1 ATOM 461 C C . LEU 61 61 ? A -6.889 14.475 -1.029 1 1 A LEU 0.840 1 ATOM 462 O O . LEU 61 61 ? A -6.925 14.472 0.199 1 1 A LEU 0.840 1 ATOM 463 C CB . LEU 61 61 ? A -8.833 13.259 -1.942 1 1 A LEU 0.840 1 ATOM 464 C CG . LEU 61 61 ? A -9.393 12.671 -3.250 1 1 A LEU 0.840 1 ATOM 465 C CD1 . LEU 61 61 ? A -9.059 11.198 -3.436 1 1 A LEU 0.840 1 ATOM 466 C CD2 . LEU 61 61 ? A -10.918 12.800 -3.268 1 1 A LEU 0.840 1 ATOM 467 N N . CYS 62 62 ? A -6.486 15.559 -1.708 1 1 A CYS 0.870 1 ATOM 468 C CA . CYS 62 62 ? A -6.022 16.737 -1.006 1 1 A CYS 0.870 1 ATOM 469 C C . CYS 62 62 ? A -7.102 17.347 -0.118 1 1 A CYS 0.870 1 ATOM 470 O O . CYS 62 62 ? A -8.217 17.588 -0.556 1 1 A CYS 0.870 1 ATOM 471 C CB . CYS 62 62 ? A -5.519 17.790 -2.019 1 1 A CYS 0.870 1 ATOM 472 S SG . CYS 62 62 ? A -4.668 19.212 -1.256 1 1 A CYS 0.870 1 ATOM 473 N N . LYS 63 63 ? A -6.801 17.659 1.153 1 1 A LYS 0.830 1 ATOM 474 C CA . LYS 63 63 ? A -7.798 18.171 2.089 1 1 A LYS 0.830 1 ATOM 475 C C . LYS 63 63 ? A -8.238 19.595 1.745 1 1 A LYS 0.830 1 ATOM 476 O O . LYS 63 63 ? A -9.272 20.079 2.201 1 1 A LYS 0.830 1 ATOM 477 C CB . LYS 63 63 ? A -7.194 18.076 3.517 1 1 A LYS 0.830 1 ATOM 478 C CG . LYS 63 63 ? A -7.839 18.855 4.679 1 1 A LYS 0.830 1 ATOM 479 C CD . LYS 63 63 ? A -9.258 18.419 5.068 1 1 A LYS 0.830 1 ATOM 480 C CE . LYS 63 63 ? A -9.852 19.341 6.139 1 1 A LYS 0.830 1 ATOM 481 N NZ . LYS 63 63 ? A -11.232 18.927 6.474 1 1 A LYS 0.830 1 ATOM 482 N N . ASN 64 64 ? A -7.441 20.289 0.908 1 1 A ASN 0.860 1 ATOM 483 C CA . ASN 64 64 ? A -7.724 21.620 0.421 1 1 A ASN 0.860 1 ATOM 484 C C . ASN 64 64 ? A -8.564 21.674 -0.854 1 1 A ASN 0.860 1 ATOM 485 O O . ASN 64 64 ? A -9.471 22.490 -0.954 1 1 A ASN 0.860 1 ATOM 486 C CB . ASN 64 64 ? A -6.363 22.307 0.163 1 1 A ASN 0.860 1 ATOM 487 C CG . ASN 64 64 ? A -6.516 23.801 -0.062 1 1 A ASN 0.860 1 ATOM 488 O OD1 . ASN 64 64 ? A -6.579 24.572 0.901 1 1 A ASN 0.860 1 ATOM 489 N ND2 . ASN 64 64 ? A -6.514 24.257 -1.331 1 1 A ASN 0.860 1 ATOM 490 N N . CYS 65 65 ? A -8.231 20.871 -1.887 1 1 A CYS 0.870 1 ATOM 491 C CA . CYS 65 65 ? A -8.879 20.996 -3.191 1 1 A CYS 0.870 1 ATOM 492 C C . CYS 65 65 ? A -9.538 19.714 -3.660 1 1 A CYS 0.870 1 ATOM 493 O O . CYS 65 65 ? A -10.073 19.660 -4.762 1 1 A CYS 0.870 1 ATOM 494 C CB . CYS 65 65 ? A -7.872 21.456 -4.291 1 1 A CYS 0.870 1 ATOM 495 S SG . CYS 65 65 ? A -6.408 20.381 -4.506 1 1 A CYS 0.870 1 ATOM 496 N N . HIS 66 66 ? A -9.472 18.641 -2.852 1 1 A HIS 0.810 1 ATOM 497 C CA . HIS 66 66 ? A -10.056 17.323 -3.074 1 1 A HIS 0.810 1 ATOM 498 C C . HIS 66 66 ? A -9.738 16.614 -4.376 1 1 A HIS 0.810 1 ATOM 499 O O . HIS 66 66 ? A -10.329 15.600 -4.732 1 1 A HIS 0.810 1 ATOM 500 C CB . HIS 66 66 ? A -11.534 17.262 -2.656 1 1 A HIS 0.810 1 ATOM 501 C CG . HIS 66 66 ? A -11.637 17.520 -1.184 1 1 A HIS 0.810 1 ATOM 502 N ND1 . HIS 66 66 ? A -11.763 18.816 -0.728 1 1 A HIS 0.810 1 ATOM 503 C CD2 . HIS 66 66 ? A -11.459 16.671 -0.139 1 1 A HIS 0.810 1 ATOM 504 C CE1 . HIS 66 66 ? A -11.667 18.736 0.579 1 1 A HIS 0.810 1 ATOM 505 N NE2 . HIS 66 66 ? A -11.481 17.458 0.993 1 1 A HIS 0.810 1 ATOM 506 N N . HIS 67 67 ? A -8.713 17.102 -5.086 1 1 A HIS 0.800 1 ATOM 507 C CA . HIS 67 67 ? A -8.040 16.428 -6.169 1 1 A HIS 0.800 1 ATOM 508 C C . HIS 67 67 ? A -7.293 15.179 -5.727 1 1 A HIS 0.800 1 ATOM 509 O O . HIS 67 67 ? A -6.690 15.127 -4.650 1 1 A HIS 0.800 1 ATOM 510 C CB . HIS 67 67 ? A -7.118 17.432 -6.901 1 1 A HIS 0.800 1 ATOM 511 C CG . HIS 67 67 ? A -5.718 16.994 -7.178 1 1 A HIS 0.800 1 ATOM 512 N ND1 . HIS 67 67 ? A -5.374 16.592 -8.445 1 1 A HIS 0.800 1 ATOM 513 C CD2 . HIS 67 67 ? A -4.629 17.005 -6.371 1 1 A HIS 0.800 1 ATOM 514 C CE1 . HIS 67 67 ? A -4.084 16.380 -8.396 1 1 A HIS 0.800 1 ATOM 515 N NE2 . HIS 67 67 ? A -3.571 16.617 -7.163 1 1 A HIS 0.800 1 ATOM 516 N N . VAL 68 68 ? A -7.305 14.147 -6.591 1 1 A VAL 0.840 1 ATOM 517 C CA . VAL 68 68 ? A -6.615 12.893 -6.380 1 1 A VAL 0.840 1 ATOM 518 C C . VAL 68 68 ? A -5.097 13.055 -6.456 1 1 A VAL 0.840 1 ATOM 519 O O . VAL 68 68 ? A -4.480 13.273 -7.504 1 1 A VAL 0.840 1 ATOM 520 C CB . VAL 68 68 ? A -7.110 11.801 -7.323 1 1 A VAL 0.840 1 ATOM 521 C CG1 . VAL 68 68 ? A -6.512 10.455 -6.885 1 1 A VAL 0.840 1 ATOM 522 C CG2 . VAL 68 68 ? A -8.651 11.735 -7.275 1 1 A VAL 0.840 1 ATOM 523 N N . ILE 69 69 ? A -4.426 12.968 -5.292 1 1 A ILE 0.840 1 ATOM 524 C CA . ILE 69 69 ? A -2.981 13.045 -5.204 1 1 A ILE 0.840 1 ATOM 525 C C . ILE 69 69 ? A -2.299 11.839 -5.843 1 1 A ILE 0.840 1 ATOM 526 O O . ILE 69 69 ? A -1.383 12.012 -6.653 1 1 A ILE 0.840 1 ATOM 527 C CB . ILE 69 69 ? A -2.569 13.288 -3.749 1 1 A ILE 0.840 1 ATOM 528 C CG1 . ILE 69 69 ? A -2.951 14.748 -3.355 1 1 A ILE 0.840 1 ATOM 529 C CG2 . ILE 69 69 ? A -1.084 12.966 -3.476 1 1 A ILE 0.840 1 ATOM 530 C CD1 . ILE 69 69 ? A -2.697 15.166 -1.897 1 1 A ILE 0.840 1 ATOM 531 N N . ALA 70 70 ? A -2.781 10.614 -5.542 1 1 A ALA 0.880 1 ATOM 532 C CA . ALA 70 70 ? A -2.112 9.377 -5.869 1 1 A ALA 0.880 1 ATOM 533 C C . ALA 70 70 ? A -3.122 8.244 -5.995 1 1 A ALA 0.880 1 ATOM 534 O O . ALA 70 70 ? A -4.323 8.466 -5.902 1 1 A ALA 0.880 1 ATOM 535 C CB . ALA 70 70 ? A -1.059 9.070 -4.785 1 1 A ALA 0.880 1 ATOM 536 N N . ARG 71 71 ? A -2.673 7.008 -6.279 1 1 A ARG 0.770 1 ATOM 537 C CA . ARG 71 71 ? A -3.479 5.803 -6.168 1 1 A ARG 0.770 1 ATOM 538 C C . ARG 71 71 ? A -2.648 4.788 -5.395 1 1 A ARG 0.770 1 ATOM 539 O O . ARG 71 71 ? A -1.425 4.770 -5.557 1 1 A ARG 0.770 1 ATOM 540 C CB . ARG 71 71 ? A -3.817 5.169 -7.546 1 1 A ARG 0.770 1 ATOM 541 C CG . ARG 71 71 ? A -5.145 5.631 -8.176 1 1 A ARG 0.770 1 ATOM 542 C CD . ARG 71 71 ? A -5.226 7.026 -8.797 1 1 A ARG 0.770 1 ATOM 543 N NE . ARG 71 71 ? A -6.656 7.148 -9.196 1 1 A ARG 0.770 1 ATOM 544 C CZ . ARG 71 71 ? A -7.206 8.003 -10.054 1 1 A ARG 0.770 1 ATOM 545 N NH1 . ARG 71 71 ? A -6.475 8.769 -10.849 1 1 A ARG 0.770 1 ATOM 546 N NH2 . ARG 71 71 ? A -8.534 8.017 -10.124 1 1 A ARG 0.770 1 ATOM 547 N N . HIS 72 72 ? A -3.286 3.933 -4.557 1 1 A HIS 0.790 1 ATOM 548 C CA . HIS 72 72 ? A -2.637 2.917 -3.736 1 1 A HIS 0.790 1 ATOM 549 C C . HIS 72 72 ? A -3.266 1.534 -3.824 1 1 A HIS 0.790 1 ATOM 550 O O . HIS 72 72 ? A -4.482 1.366 -3.736 1 1 A HIS 0.790 1 ATOM 551 C CB . HIS 72 72 ? A -2.724 3.306 -2.242 1 1 A HIS 0.790 1 ATOM 552 C CG . HIS 72 72 ? A -1.912 2.469 -1.279 1 1 A HIS 0.790 1 ATOM 553 N ND1 . HIS 72 72 ? A -0.911 3.087 -0.555 1 1 A HIS 0.790 1 ATOM 554 C CD2 . HIS 72 72 ? A -2.064 1.184 -0.854 1 1 A HIS 0.790 1 ATOM 555 C CE1 . HIS 72 72 ? A -0.480 2.177 0.291 1 1 A HIS 0.790 1 ATOM 556 N NE2 . HIS 72 72 ? A -1.143 1.007 0.157 1 1 A HIS 0.790 1 ATOM 557 N N . GLU 73 73 ? A -2.432 0.490 -3.936 1 1 A GLU 0.830 1 ATOM 558 C CA . GLU 73 73 ? A -2.840 -0.897 -3.919 1 1 A GLU 0.830 1 ATOM 559 C C . GLU 73 73 ? A -1.977 -1.699 -2.951 1 1 A GLU 0.830 1 ATOM 560 O O . GLU 73 73 ? A -0.769 -1.496 -2.839 1 1 A GLU 0.830 1 ATOM 561 C CB . GLU 73 73 ? A -2.742 -1.460 -5.352 1 1 A GLU 0.830 1 ATOM 562 C CG . GLU 73 73 ? A -2.962 -2.982 -5.484 1 1 A GLU 0.830 1 ATOM 563 C CD . GLU 73 73 ? A -3.163 -3.373 -6.944 1 1 A GLU 0.830 1 ATOM 564 O OE1 . GLU 73 73 ? A -4.333 -3.651 -7.313 1 1 A GLU 0.830 1 ATOM 565 O OE2 . GLU 73 73 ? A -2.155 -3.378 -7.695 1 1 A GLU 0.830 1 ATOM 566 N N . TYR 74 74 ? A -2.593 -2.613 -2.179 1 1 A TYR 0.860 1 ATOM 567 C CA . TYR 74 74 ? A -1.920 -3.552 -1.305 1 1 A TYR 0.860 1 ATOM 568 C C . TYR 74 74 ? A -2.516 -4.931 -1.573 1 1 A TYR 0.860 1 ATOM 569 O O . TYR 74 74 ? A -3.735 -5.101 -1.545 1 1 A TYR 0.860 1 ATOM 570 C CB . TYR 74 74 ? A -2.100 -3.091 0.175 1 1 A TYR 0.860 1 ATOM 571 C CG . TYR 74 74 ? A -1.836 -4.155 1.212 1 1 A TYR 0.860 1 ATOM 572 C CD1 . TYR 74 74 ? A -0.546 -4.656 1.435 1 1 A TYR 0.860 1 ATOM 573 C CD2 . TYR 74 74 ? A -2.905 -4.680 1.955 1 1 A TYR 0.860 1 ATOM 574 C CE1 . TYR 74 74 ? A -0.331 -5.672 2.380 1 1 A TYR 0.860 1 ATOM 575 C CE2 . TYR 74 74 ? A -2.693 -5.676 2.916 1 1 A TYR 0.860 1 ATOM 576 C CZ . TYR 74 74 ? A -1.404 -6.171 3.126 1 1 A TYR 0.860 1 ATOM 577 O OH . TYR 74 74 ? A -1.201 -7.168 4.099 1 1 A TYR 0.860 1 ATOM 578 N N . THR 75 75 ? A -1.675 -5.953 -1.850 1 1 A THR 0.890 1 ATOM 579 C CA . THR 75 75 ? A -2.141 -7.324 -2.062 1 1 A THR 0.890 1 ATOM 580 C C . THR 75 75 ? A -1.406 -8.258 -1.118 1 1 A THR 0.890 1 ATOM 581 O O . THR 75 75 ? A -0.226 -8.083 -0.817 1 1 A THR 0.890 1 ATOM 582 C CB . THR 75 75 ? A -2.172 -7.838 -3.522 1 1 A THR 0.890 1 ATOM 583 O OG1 . THR 75 75 ? A -0.993 -8.497 -3.974 1 1 A THR 0.890 1 ATOM 584 C CG2 . THR 75 75 ? A -2.410 -6.667 -4.487 1 1 A THR 0.890 1 ATOM 585 N N . PHE 76 76 ? A -2.108 -9.250 -0.556 1 1 A PHE 0.870 1 ATOM 586 C CA . PHE 76 76 ? A -1.560 -10.194 0.390 1 1 A PHE 0.870 1 ATOM 587 C C . PHE 76 76 ? A -1.988 -11.593 -0.021 1 1 A PHE 0.870 1 ATOM 588 O O . PHE 76 76 ? A -3.178 -11.860 -0.109 1 1 A PHE 0.870 1 ATOM 589 C CB . PHE 76 76 ? A -2.089 -9.838 1.809 1 1 A PHE 0.870 1 ATOM 590 C CG . PHE 76 76 ? A -1.824 -10.923 2.813 1 1 A PHE 0.870 1 ATOM 591 C CD1 . PHE 76 76 ? A -0.512 -11.210 3.199 1 1 A PHE 0.870 1 ATOM 592 C CD2 . PHE 76 76 ? A -2.868 -11.744 3.269 1 1 A PHE 0.870 1 ATOM 593 C CE1 . PHE 76 76 ? A -0.244 -12.289 4.045 1 1 A PHE 0.870 1 ATOM 594 C CE2 . PHE 76 76 ? A -2.603 -12.832 4.108 1 1 A PHE 0.870 1 ATOM 595 C CZ . PHE 76 76 ? A -1.287 -13.100 4.507 1 1 A PHE 0.870 1 ATOM 596 N N . SER 77 77 ? A -1.036 -12.520 -0.236 1 1 A SER 0.900 1 ATOM 597 C CA . SER 77 77 ? A -1.311 -13.878 -0.692 1 1 A SER 0.900 1 ATOM 598 C C . SER 77 77 ? A -0.745 -14.882 0.274 1 1 A SER 0.900 1 ATOM 599 O O . SER 77 77 ? A 0.221 -14.624 0.989 1 1 A SER 0.900 1 ATOM 600 C CB . SER 77 77 ? A -0.721 -14.190 -2.096 1 1 A SER 0.900 1 ATOM 601 O OG . SER 77 77 ? A -1.696 -13.880 -3.083 1 1 A SER 0.900 1 ATOM 602 N N . ILE 78 78 ? A -1.333 -16.089 0.326 1 1 A ILE 0.880 1 ATOM 603 C CA . ILE 78 78 ? A -0.778 -17.204 1.071 1 1 A ILE 0.880 1 ATOM 604 C C . ILE 78 78 ? A -0.560 -18.324 0.079 1 1 A ILE 0.880 1 ATOM 605 O O . ILE 78 78 ? A -1.472 -18.716 -0.646 1 1 A ILE 0.880 1 ATOM 606 C CB . ILE 78 78 ? A -1.662 -17.657 2.232 1 1 A ILE 0.880 1 ATOM 607 C CG1 . ILE 78 78 ? A -1.906 -16.451 3.174 1 1 A ILE 0.880 1 ATOM 608 C CG2 . ILE 78 78 ? A -0.992 -18.841 2.971 1 1 A ILE 0.880 1 ATOM 609 C CD1 . ILE 78 78 ? A -2.545 -16.794 4.525 1 1 A ILE 0.880 1 ATOM 610 N N . MET 79 79 ? A 0.669 -18.857 0.009 1 1 A MET 0.920 1 ATOM 611 C CA . MET 79 79 ? A 1.025 -19.932 -0.889 1 1 A MET 0.920 1 ATOM 612 C C . MET 79 79 ? A 1.658 -21.024 -0.058 1 1 A MET 0.920 1 ATOM 613 O O . MET 79 79 ? A 2.660 -20.794 0.616 1 1 A MET 0.920 1 ATOM 614 C CB . MET 79 79 ? A 2.005 -19.479 -2.003 1 1 A MET 0.920 1 ATOM 615 C CG . MET 79 79 ? A 3.146 -18.541 -1.548 1 1 A MET 0.920 1 ATOM 616 S SD . MET 79 79 ? A 4.634 -18.607 -2.597 1 1 A MET 0.920 1 ATOM 617 C CE . MET 79 79 ? A 3.844 -18.263 -4.194 1 1 A MET 0.920 1 ATOM 618 N N . ASP 80 80 ? A 1.070 -22.237 -0.064 1 1 A ASP 0.890 1 ATOM 619 C CA . ASP 80 80 ? A 1.552 -23.401 0.662 1 1 A ASP 0.890 1 ATOM 620 C C . ASP 80 80 ? A 1.888 -23.130 2.135 1 1 A ASP 0.890 1 ATOM 621 O O . ASP 80 80 ? A 1.000 -22.940 2.968 1 1 A ASP 0.890 1 ATOM 622 C CB . ASP 80 80 ? A 2.671 -24.113 -0.146 1 1 A ASP 0.890 1 ATOM 623 C CG . ASP 80 80 ? A 2.150 -24.354 -1.556 1 1 A ASP 0.890 1 ATOM 624 O OD1 . ASP 80 80 ? A 1.082 -25.011 -1.675 1 1 A ASP 0.890 1 ATOM 625 O OD2 . ASP 80 80 ? A 2.780 -23.850 -2.515 1 1 A ASP 0.890 1 ATOM 626 N N . GLU 81 81 ? A 3.189 -23.062 2.462 1 1 A GLU 0.860 1 ATOM 627 C CA . GLU 81 81 ? A 3.716 -22.859 3.796 1 1 A GLU 0.860 1 ATOM 628 C C . GLU 81 81 ? A 4.206 -21.418 4.012 1 1 A GLU 0.860 1 ATOM 629 O O . GLU 81 81 ? A 4.903 -21.113 4.983 1 1 A GLU 0.860 1 ATOM 630 C CB . GLU 81 81 ? A 4.910 -23.825 4.032 1 1 A GLU 0.860 1 ATOM 631 C CG . GLU 81 81 ? A 4.614 -25.323 3.744 1 1 A GLU 0.860 1 ATOM 632 C CD . GLU 81 81 ? A 3.621 -25.974 4.713 1 1 A GLU 0.860 1 ATOM 633 O OE1 . GLU 81 81 ? A 3.495 -25.501 5.872 1 1 A GLU 0.860 1 ATOM 634 O OE2 . GLU 81 81 ? A 3.015 -26.997 4.301 1 1 A GLU 0.860 1 ATOM 635 N N . PHE 82 82 ? A 3.895 -20.466 3.100 1 1 A PHE 0.890 1 ATOM 636 C CA . PHE 82 82 ? A 4.439 -19.112 3.152 1 1 A PHE 0.890 1 ATOM 637 C C . PHE 82 82 ? A 3.370 -18.046 2.913 1 1 A PHE 0.890 1 ATOM 638 O O . PHE 82 82 ? A 2.302 -18.289 2.359 1 1 A PHE 0.890 1 ATOM 639 C CB . PHE 82 82 ? A 5.596 -18.834 2.131 1 1 A PHE 0.890 1 ATOM 640 C CG . PHE 82 82 ? A 6.386 -20.051 1.712 1 1 A PHE 0.890 1 ATOM 641 C CD1 . PHE 82 82 ? A 7.141 -20.818 2.618 1 1 A PHE 0.890 1 ATOM 642 C CD2 . PHE 82 82 ? A 6.379 -20.431 0.360 1 1 A PHE 0.890 1 ATOM 643 C CE1 . PHE 82 82 ? A 7.855 -21.944 2.185 1 1 A PHE 0.890 1 ATOM 644 C CE2 . PHE 82 82 ? A 7.096 -21.547 -0.082 1 1 A PHE 0.890 1 ATOM 645 C CZ . PHE 82 82 ? A 7.835 -22.305 0.832 1 1 A PHE 0.890 1 ATOM 646 N N . GLN 83 83 ? A 3.660 -16.795 3.319 1 1 A GLN 0.870 1 ATOM 647 C CA . GLN 83 83 ? A 2.798 -15.646 3.120 1 1 A GLN 0.870 1 ATOM 648 C C . GLN 83 83 ? A 3.519 -14.593 2.289 1 1 A GLN 0.870 1 ATOM 649 O O . GLN 83 83 ? A 4.679 -14.299 2.552 1 1 A GLN 0.870 1 ATOM 650 C CB . GLN 83 83 ? A 2.414 -14.976 4.465 1 1 A GLN 0.870 1 ATOM 651 C CG . GLN 83 83 ? A 2.145 -15.943 5.636 1 1 A GLN 0.870 1 ATOM 652 C CD . GLN 83 83 ? A 1.581 -15.180 6.834 1 1 A GLN 0.870 1 ATOM 653 O OE1 . GLN 83 83 ? A 0.406 -15.297 7.173 1 1 A GLN 0.870 1 ATOM 654 N NE2 . GLN 83 83 ? A 2.422 -14.348 7.490 1 1 A GLN 0.870 1 ATOM 655 N N . GLU 84 84 ? A 2.853 -13.983 1.295 1 1 A GLU 0.840 1 ATOM 656 C CA . GLU 84 84 ? A 3.406 -12.967 0.413 1 1 A GLU 0.840 1 ATOM 657 C C . GLU 84 84 ? A 2.696 -11.645 0.641 1 1 A GLU 0.840 1 ATOM 658 O O . GLU 84 84 ? A 1.472 -11.588 0.718 1 1 A GLU 0.840 1 ATOM 659 C CB . GLU 84 84 ? A 3.149 -13.332 -1.063 1 1 A GLU 0.840 1 ATOM 660 C CG . GLU 84 84 ? A 4.028 -14.478 -1.603 1 1 A GLU 0.840 1 ATOM 661 C CD . GLU 84 84 ? A 3.517 -14.922 -2.968 1 1 A GLU 0.840 1 ATOM 662 O OE1 . GLU 84 84 ? A 2.303 -15.254 -3.050 1 1 A GLU 0.840 1 ATOM 663 O OE2 . GLU 84 84 ? A 4.326 -14.952 -3.927 1 1 A GLU 0.840 1 ATOM 664 N N . TYR 85 85 ? A 3.443 -10.535 0.742 1 1 A TYR 0.860 1 ATOM 665 C CA . TYR 85 85 ? A 2.897 -9.207 0.956 1 1 A TYR 0.860 1 ATOM 666 C C . TYR 85 85 ? A 3.380 -8.306 -0.164 1 1 A TYR 0.860 1 ATOM 667 O O . TYR 85 85 ? A 4.584 -8.166 -0.339 1 1 A TYR 0.860 1 ATOM 668 C CB . TYR 85 85 ? A 3.456 -8.589 2.269 1 1 A TYR 0.860 1 ATOM 669 C CG . TYR 85 85 ? A 2.937 -9.279 3.495 1 1 A TYR 0.860 1 ATOM 670 C CD1 . TYR 85 85 ? A 3.545 -10.446 3.989 1 1 A TYR 0.860 1 ATOM 671 C CD2 . TYR 85 85 ? A 1.847 -8.734 4.190 1 1 A TYR 0.860 1 ATOM 672 C CE1 . TYR 85 85 ? A 3.055 -11.065 5.148 1 1 A TYR 0.860 1 ATOM 673 C CE2 . TYR 85 85 ? A 1.350 -9.356 5.343 1 1 A TYR 0.860 1 ATOM 674 C CZ . TYR 85 85 ? A 1.956 -10.523 5.821 1 1 A TYR 0.860 1 ATOM 675 O OH . TYR 85 85 ? A 1.407 -11.183 6.937 1 1 A TYR 0.860 1 ATOM 676 N N . THR 86 86 ? A 2.499 -7.639 -0.941 1 1 A THR 0.900 1 ATOM 677 C CA . THR 86 86 ? A 2.927 -6.693 -1.979 1 1 A THR 0.900 1 ATOM 678 C C . THR 86 86 ? A 2.230 -5.356 -1.788 1 1 A THR 0.900 1 ATOM 679 O O . THR 86 86 ? A 1.125 -5.275 -1.253 1 1 A THR 0.900 1 ATOM 680 C CB . THR 86 86 ? A 2.832 -7.177 -3.444 1 1 A THR 0.900 1 ATOM 681 O OG1 . THR 86 86 ? A 1.615 -6.866 -4.114 1 1 A THR 0.900 1 ATOM 682 C CG2 . THR 86 86 ? A 3.009 -8.697 -3.533 1 1 A THR 0.900 1 ATOM 683 N N . MET 87 87 ? A 2.868 -4.244 -2.192 1 1 A MET 0.880 1 ATOM 684 C CA . MET 87 87 ? A 2.255 -2.932 -2.143 1 1 A MET 0.880 1 ATOM 685 C C . MET 87 87 ? A 2.699 -2.142 -3.350 1 1 A MET 0.880 1 ATOM 686 O O . MET 87 87 ? A 3.860 -2.194 -3.753 1 1 A MET 0.880 1 ATOM 687 C CB . MET 87 87 ? A 2.625 -2.158 -0.847 1 1 A MET 0.880 1 ATOM 688 C CG . MET 87 87 ? A 2.049 -0.726 -0.739 1 1 A MET 0.880 1 ATOM 689 S SD . MET 87 87 ? A 2.450 0.146 0.806 1 1 A MET 0.880 1 ATOM 690 C CE . MET 87 87 ? A 4.170 0.536 0.380 1 1 A MET 0.880 1 ATOM 691 N N . LEU 88 88 ? A 1.764 -1.398 -3.964 1 1 A LEU 0.900 1 ATOM 692 C CA . LEU 88 88 ? A 2.033 -0.543 -5.090 1 1 A LEU 0.900 1 ATOM 693 C C . LEU 88 88 ? A 1.294 0.783 -4.926 1 1 A LEU 0.900 1 ATOM 694 O O . LEU 88 88 ? A 0.074 0.859 -5.023 1 1 A LEU 0.900 1 ATOM 695 C CB . LEU 88 88 ? A 1.557 -1.264 -6.374 1 1 A LEU 0.900 1 ATOM 696 C CG . LEU 88 88 ? A 1.954 -0.584 -7.696 1 1 A LEU 0.900 1 ATOM 697 C CD1 . LEU 88 88 ? A 3.434 -0.819 -8.026 1 1 A LEU 0.900 1 ATOM 698 C CD2 . LEU 88 88 ? A 1.045 -1.051 -8.841 1 1 A LEU 0.900 1 ATOM 699 N N . CYS 89 89 ? A 1.999 1.899 -4.679 1 1 A CYS 0.930 1 ATOM 700 C CA . CYS 89 89 ? A 1.362 3.200 -4.590 1 1 A CYS 0.930 1 ATOM 701 C C . CYS 89 89 ? A 2.284 4.287 -5.061 1 1 A CYS 0.930 1 ATOM 702 O O . CYS 89 89 ? A 3.472 4.282 -4.749 1 1 A CYS 0.930 1 ATOM 703 C CB . CYS 89 89 ? A 0.979 3.518 -3.128 1 1 A CYS 0.930 1 ATOM 704 S SG . CYS 89 89 ? A 0.176 5.143 -2.824 1 1 A CYS 0.930 1 ATOM 705 N N . LEU 90 90 ? A 1.731 5.286 -5.782 1 1 A LEU 0.890 1 ATOM 706 C CA . LEU 90 90 ? A 2.468 6.429 -6.297 1 1 A LEU 0.890 1 ATOM 707 C C . LEU 90 90 ? A 3.128 7.233 -5.183 1 1 A LEU 0.890 1 ATOM 708 O O . LEU 90 90 ? A 4.301 7.588 -5.264 1 1 A LEU 0.890 1 ATOM 709 C CB . LEU 90 90 ? A 1.507 7.310 -7.147 1 1 A LEU 0.890 1 ATOM 710 C CG . LEU 90 90 ? A 2.061 8.657 -7.668 1 1 A LEU 0.890 1 ATOM 711 C CD1 . LEU 90 90 ? A 3.285 8.474 -8.567 1 1 A LEU 0.890 1 ATOM 712 C CD2 . LEU 90 90 ? A 0.990 9.444 -8.440 1 1 A LEU 0.890 1 ATOM 713 N N . LEU 91 91 ? A 2.388 7.476 -4.083 1 1 A LEU 0.880 1 ATOM 714 C CA . LEU 91 91 ? A 2.891 8.169 -2.916 1 1 A LEU 0.880 1 ATOM 715 C C . LEU 91 91 ? A 3.580 7.249 -1.920 1 1 A LEU 0.880 1 ATOM 716 O O . LEU 91 91 ? A 4.719 7.479 -1.518 1 1 A LEU 0.880 1 ATOM 717 C CB . LEU 91 91 ? A 1.699 8.878 -2.218 1 1 A LEU 0.880 1 ATOM 718 C CG . LEU 91 91 ? A 1.994 9.518 -0.845 1 1 A LEU 0.880 1 ATOM 719 C CD1 . LEU 91 91 ? A 3.108 10.567 -0.923 1 1 A LEU 0.880 1 ATOM 720 C CD2 . LEU 91 91 ? A 0.719 10.129 -0.246 1 1 A LEU 0.880 1 ATOM 721 N N . CYS 92 92 ? A 2.897 6.178 -1.475 1 1 A CYS 0.920 1 ATOM 722 C CA . CYS 92 92 ? A 3.332 5.382 -0.341 1 1 A CYS 0.920 1 ATOM 723 C C . CYS 92 92 ? A 4.382 4.345 -0.666 1 1 A CYS 0.920 1 ATOM 724 O O . CYS 92 92 ? A 5.116 3.924 0.229 1 1 A CYS 0.920 1 ATOM 725 C CB . CYS 92 92 ? A 2.137 4.697 0.369 1 1 A CYS 0.920 1 ATOM 726 S SG . CYS 92 92 ? A 0.934 5.912 1.000 1 1 A CYS 0.920 1 ATOM 727 N N . GLY 93 93 ? A 4.531 3.957 -1.946 1 1 A GLY 0.920 1 ATOM 728 C CA . GLY 93 93 ? A 5.654 3.153 -2.394 1 1 A GLY 0.920 1 ATOM 729 C C . GLY 93 93 ? A 5.345 1.852 -3.054 1 1 A GLY 0.920 1 ATOM 730 O O . GLY 93 93 ? A 4.212 1.389 -3.103 1 1 A GLY 0.920 1 ATOM 731 N N . LYS 94 94 ? A 6.397 1.218 -3.590 1 1 A LYS 0.880 1 ATOM 732 C CA . LYS 94 94 ? A 6.330 -0.099 -4.183 1 1 A LYS 0.880 1 ATOM 733 C C . LYS 94 94 ? A 7.216 -1.035 -3.384 1 1 A LYS 0.880 1 ATOM 734 O O . LYS 94 94 ? A 8.412 -0.791 -3.204 1 1 A LYS 0.880 1 ATOM 735 C CB . LYS 94 94 ? A 6.781 -0.076 -5.663 1 1 A LYS 0.880 1 ATOM 736 C CG . LYS 94 94 ? A 6.837 -1.465 -6.326 1 1 A LYS 0.880 1 ATOM 737 C CD . LYS 94 94 ? A 7.139 -1.418 -7.836 1 1 A LYS 0.880 1 ATOM 738 C CE . LYS 94 94 ? A 8.498 -0.795 -8.170 1 1 A LYS 0.880 1 ATOM 739 N NZ . LYS 94 94 ? A 8.738 -0.843 -9.630 1 1 A LYS 0.880 1 ATOM 740 N N . ALA 95 95 ? A 6.661 -2.142 -2.871 1 1 A ALA 0.920 1 ATOM 741 C CA . ALA 95 95 ? A 7.390 -3.009 -1.977 1 1 A ALA 0.920 1 ATOM 742 C C . ALA 95 95 ? A 6.819 -4.410 -2.029 1 1 A ALA 0.920 1 ATOM 743 O O . ALA 95 95 ? A 5.697 -4.617 -2.486 1 1 A ALA 0.920 1 ATOM 744 C CB . ALA 95 95 ? A 7.319 -2.469 -0.534 1 1 A ALA 0.920 1 ATOM 745 N N . GLU 96 96 ? A 7.609 -5.402 -1.581 1 1 A GLU 0.850 1 ATOM 746 C CA . GLU 96 96 ? A 7.228 -6.792 -1.596 1 1 A GLU 0.850 1 ATOM 747 C C . GLU 96 96 ? A 7.979 -7.481 -0.466 1 1 A GLU 0.850 1 ATOM 748 O O . GLU 96 96 ? A 9.092 -7.063 -0.143 1 1 A GLU 0.850 1 ATOM 749 C CB . GLU 96 96 ? A 7.554 -7.402 -2.975 1 1 A GLU 0.850 1 ATOM 750 C CG . GLU 96 96 ? A 7.226 -8.899 -3.153 1 1 A GLU 0.850 1 ATOM 751 C CD . GLU 96 96 ? A 7.378 -9.262 -4.626 1 1 A GLU 0.850 1 ATOM 752 O OE1 . GLU 96 96 ? A 6.467 -8.886 -5.410 1 1 A GLU 0.850 1 ATOM 753 O OE2 . GLU 96 96 ? A 8.420 -9.868 -4.983 1 1 A GLU 0.850 1 ATOM 754 N N . ASP 97 97 ? A 7.377 -8.506 0.175 1 1 A ASP 0.860 1 ATOM 755 C CA . ASP 97 97 ? A 7.966 -9.266 1.262 1 1 A ASP 0.860 1 ATOM 756 C C . ASP 97 97 ? A 7.368 -10.674 1.275 1 1 A ASP 0.860 1 ATOM 757 O O . ASP 97 97 ? A 6.224 -10.867 0.857 1 1 A ASP 0.860 1 ATOM 758 C CB . ASP 97 97 ? A 7.683 -8.586 2.628 1 1 A ASP 0.860 1 ATOM 759 C CG . ASP 97 97 ? A 8.563 -9.197 3.701 1 1 A ASP 0.860 1 ATOM 760 O OD1 . ASP 97 97 ? A 9.808 -9.153 3.526 1 1 A ASP 0.860 1 ATOM 761 O OD2 . ASP 97 97 ? A 8.006 -9.750 4.678 1 1 A ASP 0.860 1 ATOM 762 N N . THR 98 98 ? A 8.115 -11.686 1.775 1 1 A THR 0.900 1 ATOM 763 C CA . THR 98 98 ? A 7.629 -13.067 1.825 1 1 A THR 0.900 1 ATOM 764 C C . THR 98 98 ? A 8.058 -13.742 3.114 1 1 A THR 0.900 1 ATOM 765 O O . THR 98 98 ? A 9.245 -13.847 3.416 1 1 A THR 0.900 1 ATOM 766 C CB . THR 98 98 ? A 8.072 -13.966 0.667 1 1 A THR 0.900 1 ATOM 767 O OG1 . THR 98 98 ? A 7.881 -13.305 -0.573 1 1 A THR 0.900 1 ATOM 768 C CG2 . THR 98 98 ? A 7.202 -15.231 0.604 1 1 A THR 0.900 1 ATOM 769 N N . ILE 99 99 ? A 7.100 -14.267 3.907 1 1 A ILE 0.910 1 ATOM 770 C CA . ILE 99 99 ? A 7.347 -14.809 5.237 1 1 A ILE 0.910 1 ATOM 771 C C . ILE 99 99 ? A 7.020 -16.297 5.259 1 1 A ILE 0.910 1 ATOM 772 O O . ILE 99 99 ? A 5.916 -16.703 4.904 1 1 A ILE 0.910 1 ATOM 773 C CB . ILE 99 99 ? A 6.481 -14.139 6.310 1 1 A ILE 0.910 1 ATOM 774 C CG1 . ILE 99 99 ? A 6.542 -12.595 6.209 1 1 A ILE 0.910 1 ATOM 775 C CG2 . ILE 99 99 ? A 6.942 -14.629 7.700 1 1 A ILE 0.910 1 ATOM 776 C CD1 . ILE 99 99 ? A 5.759 -11.866 7.310 1 1 A ILE 0.910 1 ATOM 777 N N . SER 100 100 ? A 7.943 -17.178 5.694 1 1 A SER 0.920 1 ATOM 778 C CA . SER 100 100 ? A 7.655 -18.598 5.882 1 1 A SER 0.920 1 ATOM 779 C C . SER 100 100 ? A 6.986 -18.867 7.225 1 1 A SER 0.920 1 ATOM 780 O O . SER 100 100 ? A 7.336 -18.275 8.244 1 1 A SER 0.920 1 ATOM 781 C CB . SER 100 100 ? A 8.930 -19.474 5.758 1 1 A SER 0.920 1 ATOM 782 O OG . SER 100 100 ? A 9.996 -18.952 6.554 1 1 A SER 0.920 1 ATOM 783 N N . ILE 101 101 ? A 5.971 -19.755 7.266 1 1 A ILE 0.930 1 ATOM 784 C CA . ILE 101 101 ? A 5.138 -19.976 8.442 1 1 A ILE 0.930 1 ATOM 785 C C . ILE 101 101 ? A 4.934 -21.469 8.657 1 1 A ILE 0.930 1 ATOM 786 O O . ILE 101 101 ? A 5.610 -22.290 8.048 1 1 A ILE 0.930 1 ATOM 787 C CB . ILE 101 101 ? A 3.826 -19.169 8.442 1 1 A ILE 0.930 1 ATOM 788 C CG1 . ILE 101 101 ? A 2.969 -19.303 7.158 1 1 A ILE 0.930 1 ATOM 789 C CG2 . ILE 101 101 ? A 4.190 -17.682 8.675 1 1 A ILE 0.930 1 ATOM 790 C CD1 . ILE 101 101 ? A 2.199 -20.621 6.997 1 1 A ILE 0.930 1 ATOM 791 N N . LEU 102 102 ? A 4.054 -21.851 9.605 1 1 A LEU 0.940 1 ATOM 792 C CA . LEU 102 102 ? A 3.802 -23.217 10.018 1 1 A LEU 0.940 1 ATOM 793 C C . LEU 102 102 ? A 2.313 -23.291 10.332 1 1 A LEU 0.940 1 ATOM 794 O O . LEU 102 102 ? A 1.724 -22.222 10.538 1 1 A LEU 0.940 1 ATOM 795 C CB . LEU 102 102 ? A 4.602 -23.552 11.312 1 1 A LEU 0.940 1 ATOM 796 C CG . LEU 102 102 ? A 6.111 -23.789 11.100 1 1 A LEU 0.940 1 ATOM 797 C CD1 . LEU 102 102 ? A 6.824 -23.911 12.455 1 1 A LEU 0.940 1 ATOM 798 C CD2 . LEU 102 102 ? A 6.377 -25.035 10.241 1 1 A LEU 0.940 1 ATOM 799 N N . PRO 103 103 ? A 1.646 -24.453 10.391 1 1 A PRO 0.950 1 ATOM 800 C CA . PRO 103 103 ? A 0.210 -24.574 10.673 1 1 A PRO 0.950 1 ATOM 801 C C . PRO 103 103 ? A -0.225 -24.017 12.019 1 1 A PRO 0.950 1 ATOM 802 O O . PRO 103 103 ? A -1.406 -23.727 12.185 1 1 A PRO 0.950 1 ATOM 803 C CB . PRO 103 103 ? A -0.083 -26.080 10.541 1 1 A PRO 0.950 1 ATOM 804 C CG . PRO 103 103 ? A 1.277 -26.750 10.745 1 1 A PRO 0.950 1 ATOM 805 C CD . PRO 103 103 ? A 2.241 -25.761 10.096 1 1 A PRO 0.950 1 ATOM 806 N N . ASP 104 104 ? A 0.701 -23.853 12.978 1 1 A ASP 0.780 1 ATOM 807 C CA . ASP 104 104 ? A 0.522 -23.234 14.277 1 1 A ASP 0.780 1 ATOM 808 C C . ASP 104 104 ? A 0.258 -21.721 14.224 1 1 A ASP 0.780 1 ATOM 809 O O . ASP 104 104 ? A -0.034 -21.093 15.240 1 1 A ASP 0.780 1 ATOM 810 C CB . ASP 104 104 ? A 1.803 -23.483 15.115 1 1 A ASP 0.780 1 ATOM 811 C CG . ASP 104 104 ? A 2.208 -24.944 15.028 1 1 A ASP 0.780 1 ATOM 812 O OD1 . ASP 104 104 ? A 1.861 -25.719 15.949 1 1 A ASP 0.780 1 ATOM 813 O OD2 . ASP 104 104 ? A 2.855 -25.288 14.000 1 1 A ASP 0.780 1 ATOM 814 N N . ASP 105 105 ? A 0.391 -21.111 13.025 1 1 A ASP 0.930 1 ATOM 815 C CA . ASP 105 105 ? A 0.235 -19.694 12.743 1 1 A ASP 0.930 1 ATOM 816 C C . ASP 105 105 ? A 1.185 -18.748 13.514 1 1 A ASP 0.930 1 ATOM 817 O O . ASP 105 105 ? A 0.727 -17.836 14.206 1 1 A ASP 0.930 1 ATOM 818 C CB . ASP 105 105 ? A -1.268 -19.307 12.823 1 1 A ASP 0.930 1 ATOM 819 C CG . ASP 105 105 ? A -1.612 -18.042 12.074 1 1 A ASP 0.930 1 ATOM 820 O OD1 . ASP 105 105 ? A -0.735 -17.427 11.414 1 1 A ASP 0.930 1 ATOM 821 O OD2 . ASP 105 105 ? A -2.801 -17.639 12.141 1 1 A ASP 0.930 1 ATOM 822 N N . PRO 106 106 ? A 2.524 -18.876 13.449 1 1 A PRO 0.920 1 ATOM 823 C CA . PRO 106 106 ? A 3.391 -18.092 14.321 1 1 A PRO 0.920 1 ATOM 824 C C . PRO 106 106 ? A 3.647 -16.720 13.734 1 1 A PRO 0.920 1 ATOM 825 O O . PRO 106 106 ? A 3.933 -15.801 14.487 1 1 A PRO 0.920 1 ATOM 826 C CB . PRO 106 106 ? A 4.692 -18.917 14.373 1 1 A PRO 0.920 1 ATOM 827 C CG . PRO 106 106 ? A 4.731 -19.657 13.032 1 1 A PRO 0.920 1 ATOM 828 C CD . PRO 106 106 ? A 3.252 -19.971 12.797 1 1 A PRO 0.920 1 ATOM 829 N N . ARG 107 107 ? A 3.605 -16.595 12.394 1 1 A ARG 0.690 1 ATOM 830 C CA . ARG 107 107 ? A 3.799 -15.377 11.615 1 1 A ARG 0.690 1 ATOM 831 C C . ARG 107 107 ? A 5.194 -14.748 11.596 1 1 A ARG 0.690 1 ATOM 832 O O . ARG 107 107 ? A 5.433 -13.888 10.745 1 1 A ARG 0.690 1 ATOM 833 C CB . ARG 107 107 ? A 2.678 -14.340 11.860 1 1 A ARG 0.690 1 ATOM 834 C CG . ARG 107 107 ? A 1.286 -14.948 11.609 1 1 A ARG 0.690 1 ATOM 835 C CD . ARG 107 107 ? A 0.128 -13.955 11.652 1 1 A ARG 0.690 1 ATOM 836 N NE . ARG 107 107 ? A -1.099 -14.784 11.484 1 1 A ARG 0.690 1 ATOM 837 C CZ . ARG 107 107 ? A -2.355 -14.330 11.517 1 1 A ARG 0.690 1 ATOM 838 N NH1 . ARG 107 107 ? A -2.618 -13.030 11.475 1 1 A ARG 0.690 1 ATOM 839 N NH2 . ARG 107 107 ? A -3.362 -15.188 11.582 1 1 A ARG 0.690 1 ATOM 840 N N . GLN 108 108 ? A 6.121 -15.240 12.442 1 1 A GLN 0.710 1 ATOM 841 C CA . GLN 108 108 ? A 7.487 -14.784 12.683 1 1 A GLN 0.710 1 ATOM 842 C C . GLN 108 108 ? A 7.590 -13.530 13.601 1 1 A GLN 0.710 1 ATOM 843 O O . GLN 108 108 ? A 6.548 -13.065 14.133 1 1 A GLN 0.710 1 ATOM 844 C CB . GLN 108 108 ? A 8.385 -14.633 11.421 1 1 A GLN 0.710 1 ATOM 845 C CG . GLN 108 108 ? A 8.506 -15.889 10.520 1 1 A GLN 0.710 1 ATOM 846 C CD . GLN 108 108 ? A 9.227 -17.087 11.146 1 1 A GLN 0.710 1 ATOM 847 O OE1 . GLN 108 108 ? A 9.991 -17.030 12.108 1 1 A GLN 0.710 1 ATOM 848 N NE2 . GLN 108 108 ? A 9.009 -18.271 10.526 1 1 A GLN 0.710 1 ATOM 849 O OXT . GLN 108 108 ? A 8.741 -13.058 13.816 1 1 A GLN 0.710 1 HETATM 850 ZN ZN . ZN . 1 ? B -1.747 17.541 -6.368 1 2 '_' ZN . 1 HETATM 851 ZN ZN . ZN . 2 ? C -4.147 20.183 -3.637 1 2 '_' ZN . 1 # # loop_ _atom_type.symbol C N O S ZN # # loop_ _ma_qa_metric.id _ma_qa_metric.name _ma_qa_metric.description _ma_qa_metric.type _ma_qa_metric.mode _ma_qa_metric.type_other_details _ma_qa_metric.software_group_id 1 QMEANDisCo 'Predicted accuracy according to all-atom lDDT in [0,1].' 'pLDDT all-atom in [0,1]' local . 5 2 QMEANDisCo 'Predicted accuracy according to all-atom lDDT in [0,1].' 'pLDDT all-atom in [0,1]' global . 5 3 GMQE 'Global Model Quality Estimate of the model accuracy, calculated by SWISS-MODEL.' 'normalized score' global . 6 # # loop_ _ma_qa_metric_global.ordinal_id _ma_qa_metric_global.model_id _ma_qa_metric_global.metric_id _ma_qa_metric_global.metric_value 1 1 2 0.865 2 1 3 0.834 # # loop_ _ma_qa_metric_local.ordinal_id _ma_qa_metric_local.model_id _ma_qa_metric_local.label_asym_id _ma_qa_metric_local.label_seq_id _ma_qa_metric_local.label_comp_id _ma_qa_metric_local.metric_id _ma_qa_metric_local.metric_value 1 1 A 2 CYS 1 0.800 2 1 A 3 GLY 1 0.830 3 1 A 4 ASP 1 0.880 4 1 A 5 CYS 1 0.890 5 1 A 6 VAL 1 0.900 6 1 A 7 GLU 1 0.890 7 1 A 8 LYS 1 0.890 8 1 A 9 GLU 1 0.890 9 1 A 10 TYR 1 0.900 10 1 A 11 PRO 1 0.940 11 1 A 12 ASN 1 0.900 12 1 A 13 ARG 1 0.850 13 1 A 14 GLY 1 0.920 14 1 A 15 ASN 1 0.890 15 1 A 16 THR 1 0.890 16 1 A 17 CYS 1 0.920 17 1 A 18 LEU 1 0.870 18 1 A 19 GLU 1 0.840 19 1 A 20 ASN 1 0.840 20 1 A 21 GLY 1 0.840 21 1 A 22 SER 1 0.800 22 1 A 23 PHE 1 0.840 23 1 A 24 LEU 1 0.850 24 1 A 25 LEU 1 0.840 25 1 A 26 ASN 1 0.870 26 1 A 27 PHE 1 0.860 27 1 A 28 THR 1 0.900 28 1 A 29 GLY 1 0.900 29 1 A 30 CYS 1 0.890 30 1 A 31 ALA 1 0.890 31 1 A 32 VAL 1 0.900 32 1 A 33 CYS 1 0.900 33 1 A 34 SER 1 0.890 34 1 A 35 LYS 1 0.870 35 1 A 36 ARG 1 0.820 36 1 A 37 ASP 1 0.870 37 1 A 38 PHE 1 0.860 38 1 A 39 MET 1 0.860 39 1 A 40 LEU 1 0.860 40 1 A 41 ILE 1 0.850 41 1 A 42 THR 1 0.870 42 1 A 43 ASN 1 0.860 43 1 A 44 LYS 1 0.840 44 1 A 45 SER 1 0.880 45 1 A 46 LEU 1 0.900 46 1 A 47 LYS 1 0.890 47 1 A 48 GLU 1 0.860 48 1 A 49 GLU 1 0.900 49 1 A 50 ASP 1 0.920 50 1 A 51 GLY 1 0.910 51 1 A 52 GLU 1 0.880 52 1 A 53 GLU 1 0.880 53 1 A 54 ILE 1 0.890 54 1 A 55 VAL 1 0.880 55 1 A 56 THR 1 0.860 56 1 A 57 TYR 1 0.840 57 1 A 58 ASP 1 0.790 58 1 A 59 PRO 1 0.770 59 1 A 60 ASP 1 0.370 60 1 A 61 LEU 1 0.840 61 1 A 62 CYS 1 0.870 62 1 A 63 LYS 1 0.830 63 1 A 64 ASN 1 0.860 64 1 A 65 CYS 1 0.870 65 1 A 66 HIS 1 0.810 66 1 A 67 HIS 1 0.800 67 1 A 68 VAL 1 0.840 68 1 A 69 ILE 1 0.840 69 1 A 70 ALA 1 0.880 70 1 A 71 ARG 1 0.770 71 1 A 72 HIS 1 0.790 72 1 A 73 GLU 1 0.830 73 1 A 74 TYR 1 0.860 74 1 A 75 THR 1 0.890 75 1 A 76 PHE 1 0.870 76 1 A 77 SER 1 0.900 77 1 A 78 ILE 1 0.880 78 1 A 79 MET 1 0.920 79 1 A 80 ASP 1 0.890 80 1 A 81 GLU 1 0.860 81 1 A 82 PHE 1 0.890 82 1 A 83 GLN 1 0.870 83 1 A 84 GLU 1 0.840 84 1 A 85 TYR 1 0.860 85 1 A 86 THR 1 0.900 86 1 A 87 MET 1 0.880 87 1 A 88 LEU 1 0.900 88 1 A 89 CYS 1 0.930 89 1 A 90 LEU 1 0.890 90 1 A 91 LEU 1 0.880 91 1 A 92 CYS 1 0.920 92 1 A 93 GLY 1 0.920 93 1 A 94 LYS 1 0.880 94 1 A 95 ALA 1 0.920 95 1 A 96 GLU 1 0.850 96 1 A 97 ASP 1 0.860 97 1 A 98 THR 1 0.900 98 1 A 99 ILE 1 0.910 99 1 A 100 SER 1 0.920 100 1 A 101 ILE 1 0.930 101 1 A 102 LEU 1 0.940 102 1 A 103 PRO 1 0.950 103 1 A 104 ASP 1 0.780 104 1 A 105 ASP 1 0.930 105 1 A 106 PRO 1 0.920 106 1 A 107 ARG 1 0.690 107 1 A 108 GLN 1 0.710 # # loop_ _pdbx_data_usage.id _pdbx_data_usage.type _pdbx_data_usage.details _pdbx_data_usage.url 1 license ;This SWISS-MODEL protein model is copyright. It is produced by the SWISS-MODEL server, developed by the Computational Structural Biology Group at the SIB Swiss Institute of Bioinformatics at the Biozentrum, University of Basel (https://swissmodel.expasy.org). This model is licensed under the CC BY-SA 4.0 Creative Commons Attribution-ShareAlike 4.0 International License (https://creativecommons.org/licenses/by-sa/4.0/legalcode), i.e. you can copy and redistribute the model in any medium or format, transform and build upon the model for any purpose, even commercially, under the following terms: Attribution - You must give appropriate credit, provide a link to the license, and indicate if changes were made. You may do so in any reasonable manner, but not in any way that suggests the licensor endorses you or your use. When you publish, patent or distribute results that were fully or partially based on the model, please cite the corresponding papers mentioned under JRNL. ShareAlike - If you remix, transform, or build upon the material, you must distribute your contributions under the same license as the original. No additional restrictions - you may not apply legal terms or technological measures that legally restrict others from doing anything the license permits. Find a human-readable summary of (and not a substitute for) the CC BY-SA 4.0 license at this link: https://creativecommons.org/licenses/by-sa/4.0/ ; https://creativecommons.org/licenses/by-sa/4.0/legalcode 2 disclaimer ;The SWISS-MODEL SERVER produces theoretical models for proteins. The results of any theoretical modelling procedure is NON-EXPERIMENTAL and MUST be considered with care. These models may contain significant errors. This is especially true for automated modeling since there is no human intervention during model building. Please read the header section and the logfile carefully to know what templates and alignments were used during the model building process. All information by the SWISS-MODEL SERVER is provided "AS-IS", without any warranty, expressed or implied. ; https://swissmodel.expasy.org/docs/terms_of_use#disclaimer #