data_SMR-39bdd74e9ca7ccec5e15e2bcf89472a3_1 _entry.id SMR-39bdd74e9ca7ccec5e15e2bcf89472a3_1 _struct.entry_id SMR-39bdd74e9ca7ccec5e15e2bcf89472a3_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: - A6KU58/ A6KU58_RAT, Spleen protein 1 - Q9QXN2/ PAT14_RAT, Prostate and testis expressed protein 14 Estimated model accuracy of this model is 0.468, calculated by SWISS-MODEL as Global Model Quality Estimate (GMQE). ; _struct.pdbx_structure_determination_methodology computational _struct.title 'Model for UniProtKB entries A6KU58, Q9QXN2' _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' 2024-10.3 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' . 2.2.31 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' TRP 'L-peptide linking' TRYPTOPHAN 'C11 H12 N2 O2' 204.229 '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' # # loop_ _entity.id _entity.type _entity.src_method _entity.pdbx_description _entity.formula_weight _entity.pdbx_number_of_molecules _entity.details 1 polymer man . 12772.238 1 . # # 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 PAT14_RAT Q9QXN2 1 ;MGKNILLLLLGLSFVIGFLQALRCLECDMLNSDGICEKGNSTCEAKEDQECGILVVSQGVDILFGMQDCS SHCLNKTFHHYNLTLDFTCCHDQSLCNEF ; 'Prostate and testis expressed protein 14' 2 1 UNP A6KU58_RAT A6KU58 1 ;MGKNILLLLLGLSFVIGFLQALRCLECDMLNSDGICEKGNSTCEAKEDQECGILVVSQGVDILFGMQDCS SHCLNKTFHHYNLTLDFTCCHDQSLCNEF ; 'Spleen protein 1' # # 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 99 1 99 2 2 1 99 1 99 # # 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 . PAT14_RAT Q9QXN2 . 1 99 10116 'Rattus norvegicus (Rat)' 2000-05-01 1C2A5623A01B8413 1 UNP . A6KU58_RAT A6KU58 . 1 99 10116 'Rattus norvegicus (Rat)' 2023-06-28 1C2A5623A01B8413 # # 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 B ;MGKNILLLLLGLSFVIGFLQALRCLECDMLNSDGICEKGNSTCEAKEDQECGILVVSQGVDILFGMQDCS SHCLNKTFHHYNLTLDFTCCHDQSLCNEF ; ;MGKNILLLLLGLSFVIGFLQALRCLECDMLNSDGICEKGNSTCEAKEDQECGILVVSQGVDILFGMQDCS SHCLNKTFHHYNLTLDFTCCHDQSLCNEF ; # # loop_ _entity_poly_seq.entity_id _entity_poly_seq.num _entity_poly_seq.mon_id _entity_poly_seq.hetero 1 1 MET . 1 2 GLY . 1 3 LYS . 1 4 ASN . 1 5 ILE . 1 6 LEU . 1 7 LEU . 1 8 LEU . 1 9 LEU . 1 10 LEU . 1 11 GLY . 1 12 LEU . 1 13 SER . 1 14 PHE . 1 15 VAL . 1 16 ILE . 1 17 GLY . 1 18 PHE . 1 19 LEU . 1 20 GLN . 1 21 ALA . 1 22 LEU . 1 23 ARG . 1 24 CYS . 1 25 LEU . 1 26 GLU . 1 27 CYS . 1 28 ASP . 1 29 MET . 1 30 LEU . 1 31 ASN . 1 32 SER . 1 33 ASP . 1 34 GLY . 1 35 ILE . 1 36 CYS . 1 37 GLU . 1 38 LYS . 1 39 GLY . 1 40 ASN . 1 41 SER . 1 42 THR . 1 43 CYS . 1 44 GLU . 1 45 ALA . 1 46 LYS . 1 47 GLU . 1 48 ASP . 1 49 GLN . 1 50 GLU . 1 51 CYS . 1 52 GLY . 1 53 ILE . 1 54 LEU . 1 55 VAL . 1 56 VAL . 1 57 SER . 1 58 GLN . 1 59 GLY . 1 60 VAL . 1 61 ASP . 1 62 ILE . 1 63 LEU . 1 64 PHE . 1 65 GLY . 1 66 MET . 1 67 GLN . 1 68 ASP . 1 69 CYS . 1 70 SER . 1 71 SER . 1 72 HIS . 1 73 CYS . 1 74 LEU . 1 75 ASN . 1 76 LYS . 1 77 THR . 1 78 PHE . 1 79 HIS . 1 80 HIS . 1 81 TYR . 1 82 ASN . 1 83 LEU . 1 84 THR . 1 85 LEU . 1 86 ASP . 1 87 PHE . 1 88 THR . 1 89 CYS . 1 90 CYS . 1 91 HIS . 1 92 ASP . 1 93 GLN . 1 94 SER . 1 95 LEU . 1 96 CYS . 1 97 ASN . 1 98 GLU . 1 99 PHE . # # loop_ _struct_asym.id _struct_asym.entity_id _struct_asym.details A 1 . # # 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 ? ? ? B . A 1 2 GLY 2 ? ? ? B . A 1 3 LYS 3 ? ? ? B . A 1 4 ASN 4 ? ? ? B . A 1 5 ILE 5 ? ? ? B . A 1 6 LEU 6 ? ? ? B . A 1 7 LEU 7 ? ? ? B . A 1 8 LEU 8 ? ? ? B . A 1 9 LEU 9 ? ? ? B . A 1 10 LEU 10 ? ? ? B . A 1 11 GLY 11 ? ? ? B . A 1 12 LEU 12 ? ? ? B . A 1 13 SER 13 ? ? ? B . A 1 14 PHE 14 ? ? ? B . A 1 15 VAL 15 ? ? ? B . A 1 16 ILE 16 ? ? ? B . A 1 17 GLY 17 ? ? ? B . A 1 18 PHE 18 ? ? ? B . A 1 19 LEU 19 ? ? ? B . A 1 20 GLN 20 20 GLN GLN B . A 1 21 ALA 21 21 ALA ALA B . A 1 22 LEU 22 22 LEU LEU B . A 1 23 ARG 23 23 ARG ARG B . A 1 24 CYS 24 24 CYS CYS B . A 1 25 LEU 25 25 LEU LEU B . A 1 26 GLU 26 26 GLU GLU B . A 1 27 CYS 27 27 CYS CYS B . A 1 28 ASP 28 28 ASP ASP B . A 1 29 MET 29 29 MET MET B . A 1 30 LEU 30 30 LEU LEU B . A 1 31 ASN 31 31 ASN ASN B . A 1 32 SER 32 32 SER SER B . A 1 33 ASP 33 33 ASP ASP B . A 1 34 GLY 34 34 GLY GLY B . A 1 35 ILE 35 35 ILE ILE B . A 1 36 CYS 36 36 CYS CYS B . A 1 37 GLU 37 37 GLU GLU B . A 1 38 LYS 38 38 LYS LYS B . A 1 39 GLY 39 39 GLY GLY B . A 1 40 ASN 40 40 ASN ASN B . A 1 41 SER 41 41 SER SER B . A 1 42 THR 42 42 THR THR B . A 1 43 CYS 43 43 CYS CYS B . A 1 44 GLU 44 44 GLU GLU B . A 1 45 ALA 45 45 ALA ALA B . A 1 46 LYS 46 46 LYS LYS B . A 1 47 GLU 47 47 GLU GLU B . A 1 48 ASP 48 48 ASP ASP B . A 1 49 GLN 49 49 GLN GLN B . A 1 50 GLU 50 50 GLU GLU B . A 1 51 CYS 51 51 CYS CYS B . A 1 52 GLY 52 52 GLY GLY B . A 1 53 ILE 53 53 ILE ILE B . A 1 54 LEU 54 54 LEU LEU B . A 1 55 VAL 55 55 VAL VAL B . A 1 56 VAL 56 56 VAL VAL B . A 1 57 SER 57 57 SER SER B . A 1 58 GLN 58 58 GLN GLN B . A 1 59 GLY 59 59 GLY GLY B . A 1 60 VAL 60 60 VAL VAL B . A 1 61 ASP 61 61 ASP ASP B . A 1 62 ILE 62 62 ILE ILE B . A 1 63 LEU 63 63 LEU LEU B . A 1 64 PHE 64 64 PHE PHE B . A 1 65 GLY 65 65 GLY GLY B . A 1 66 MET 66 66 MET MET B . A 1 67 GLN 67 67 GLN GLN B . A 1 68 ASP 68 68 ASP ASP B . A 1 69 CYS 69 69 CYS CYS B . A 1 70 SER 70 70 SER SER B . A 1 71 SER 71 71 SER SER B . A 1 72 HIS 72 72 HIS HIS B . A 1 73 CYS 73 73 CYS CYS B . A 1 74 LEU 74 74 LEU LEU B . A 1 75 ASN 75 75 ASN ASN B . A 1 76 LYS 76 76 LYS LYS B . A 1 77 THR 77 77 THR THR B . A 1 78 PHE 78 78 PHE PHE B . A 1 79 HIS 79 79 HIS HIS B . A 1 80 HIS 80 80 HIS HIS B . A 1 81 TYR 81 81 TYR TYR B . A 1 82 ASN 82 82 ASN ASN B . A 1 83 LEU 83 83 LEU LEU B . A 1 84 THR 84 84 THR THR B . A 1 85 LEU 85 85 LEU LEU B . A 1 86 ASP 86 86 ASP ASP B . A 1 87 PHE 87 87 PHE PHE B . A 1 88 THR 88 88 THR THR B . A 1 89 CYS 89 89 CYS CYS B . A 1 90 CYS 90 90 CYS CYS B . A 1 91 HIS 91 91 HIS HIS B . A 1 92 ASP 92 92 ASP ASP B . A 1 93 GLN 93 93 GLN GLN B . A 1 94 SER 94 94 SER SER B . A 1 95 LEU 95 95 LEU LEU B . A 1 96 CYS 96 96 CYS CYS B . A 1 97 ASN 97 97 ASN ASN B . A 1 98 GLU 98 98 GLU GLU B . A 1 99 PHE 99 ? ? ? B . # # loop_ _ma_data.id _ma_data.name _ma_data.content_type _ma_data.content_type_other_details 1 'Glycosylphosphatidylinositol-anchored high density lipoprotein-binding protein 1 {PDB ID=6oaz, label_asym_id=E, auth_asym_id=E, SMTL ID=6oaz.1.B}' 'template structure' . 2 . target . 3 'Target-template alignment by HHblits to 6oaz, label_asym_id=E' 'target-template alignment' . 4 'model 1' 'model coordinates' . 5 SMTL 'reference database' . 6 PDB 'reference database' . 7 '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 2 2 1 5 3 1 6 4 2 7 5 3 2 6 3 1 7 3 3 8 4 1 9 4 3 10 5 4 # # 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 5 SMTL https://swissmodel.expasy.org/templates/ . 2024-11-14 6 PDB https://www.wwpdb.org . 2024-11-08 # # loop_ _ma_target_entity.entity_id _ma_target_entity.data_id _ma_target_entity.origin 1 2 'reference database' # # loop_ _ma_target_entity_instance.asym_id _ma_target_entity_instance.entity_id _ma_target_entity_instance.details A 1 . # # 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 E 2 1 E # # loop_ _ma_template_poly.template_id _ma_template_poly.seq_one_letter_code _ma_template_poly.seq_one_letter_code_can 1 ;QTQQEEEEEDEDHGPDDYDEEDEDEVEEEETNRLPGGRSRVLLRCYTCKSLPRDERCDLTQDCSHGQTCT TLIAHGNTESGLLTTHSTWCTDSCQPITKTVEGTQVTMTCCQSSLCNVPPWQSSRVQDPTG ; ;QTQQEEEEEDEDHGPDDYDEEDEDEVEEEETNRLPGGRSRVLLRCYTCKSLPRDERCDLTQDCSHGQTCT TLIAHGNTESGLLTTHSTWCTDSCQPITKTVEGTQVTMTCCQSSLCNVPPWQSSRVQDPTG ; # # 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 41 118 # # 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 . 6oaz 2024-11-06 # # 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 99 # # 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 3 1 102 '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' . 3.3e-05 28.000 '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 MGKNILLLLLGLSFVIGFLQALRCLECDMLNSDGICEKGNSTCEAKEDQECGILVV---SQGVDILFGMQDCSSHCLNKTFHHYNLTLDFTCCHDQSLCNEF 2 1 2 -------------------VLLRCYTCKSLPRDERCDL-TQDCSH--GQTCTTLIAHGNTESGLLTTHSTWCTDSCQPITKTVEGTQVTMTCCQS-SLCNV- # # 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 {QSQE=0.000}' 3 2 4 3 1 3 modeling 'homology modeling' 'SWISS-MODEL auto-model mode using ProMod3 on 6oaz.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' . 4 '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 . GLN 20 20 ? A 43.818 -48.559 78.505 1 1 B GLN 0.350 1 ATOM 2 C CA . GLN 20 20 ? A 44.225 -48.431 77.057 1 1 B GLN 0.350 1 ATOM 3 C C . GLN 20 20 ? A 43.644 -47.174 76.445 1 1 B GLN 0.350 1 ATOM 4 O O . GLN 20 20 ? A 42.443 -46.964 76.529 1 1 B GLN 0.350 1 ATOM 5 C CB . GLN 20 20 ? A 43.757 -49.695 76.258 1 1 B GLN 0.350 1 ATOM 6 C CG . GLN 20 20 ? A 44.040 -49.657 74.726 1 1 B GLN 0.350 1 ATOM 7 C CD . GLN 20 20 ? A 45.543 -49.500 74.482 1 1 B GLN 0.350 1 ATOM 8 O OE1 . GLN 20 20 ? A 46.334 -50.239 75.043 1 1 B GLN 0.350 1 ATOM 9 N NE2 . GLN 20 20 ? A 45.956 -48.477 73.693 1 1 B GLN 0.350 1 ATOM 10 N N . ALA 21 21 ? A 44.486 -46.297 75.861 1 1 B ALA 0.580 1 ATOM 11 C CA . ALA 21 21 ? A 44.070 -45.064 75.235 1 1 B ALA 0.580 1 ATOM 12 C C . ALA 21 21 ? A 43.724 -45.267 73.763 1 1 B ALA 0.580 1 ATOM 13 O O . ALA 21 21 ? A 44.067 -46.288 73.163 1 1 B ALA 0.580 1 ATOM 14 C CB . ALA 21 21 ? A 45.244 -44.072 75.357 1 1 B ALA 0.580 1 ATOM 15 N N . LEU 22 22 ? A 43.037 -44.283 73.153 1 1 B LEU 0.560 1 ATOM 16 C CA . LEU 22 22 ? A 42.598 -44.323 71.776 1 1 B LEU 0.560 1 ATOM 17 C C . LEU 22 22 ? A 43.219 -43.168 71.035 1 1 B LEU 0.560 1 ATOM 18 O O . LEU 22 22 ? A 43.431 -42.091 71.600 1 1 B LEU 0.560 1 ATOM 19 C CB . LEU 22 22 ? A 41.059 -44.204 71.657 1 1 B LEU 0.560 1 ATOM 20 C CG . LEU 22 22 ? A 40.294 -45.301 72.424 1 1 B LEU 0.560 1 ATOM 21 C CD1 . LEU 22 22 ? A 38.792 -44.982 72.404 1 1 B LEU 0.560 1 ATOM 22 C CD2 . LEU 22 22 ? A 40.564 -46.718 71.874 1 1 B LEU 0.560 1 ATOM 23 N N . ARG 23 23 ? A 43.522 -43.377 69.741 1 1 B ARG 0.570 1 ATOM 24 C CA . ARG 23 23 ? A 43.690 -42.326 68.767 1 1 B ARG 0.570 1 ATOM 25 C C . ARG 23 23 ? A 42.394 -42.309 67.984 1 1 B ARG 0.570 1 ATOM 26 O O . ARG 23 23 ? A 41.931 -43.348 67.509 1 1 B ARG 0.570 1 ATOM 27 C CB . ARG 23 23 ? A 44.889 -42.638 67.822 1 1 B ARG 0.570 1 ATOM 28 C CG . ARG 23 23 ? A 45.794 -41.463 67.409 1 1 B ARG 0.570 1 ATOM 29 C CD . ARG 23 23 ? A 47.017 -41.964 66.613 1 1 B ARG 0.570 1 ATOM 30 N NE . ARG 23 23 ? A 48.288 -41.655 67.358 1 1 B ARG 0.570 1 ATOM 31 C CZ . ARG 23 23 ? A 49.491 -42.104 66.976 1 1 B ARG 0.570 1 ATOM 32 N NH1 . ARG 23 23 ? A 49.614 -42.898 65.918 1 1 B ARG 0.570 1 ATOM 33 N NH2 . ARG 23 23 ? A 50.591 -41.739 67.632 1 1 B ARG 0.570 1 ATOM 34 N N . CYS 24 24 ? A 41.741 -41.151 67.852 1 1 B CYS 0.630 1 ATOM 35 C CA . CYS 24 24 ? A 40.478 -41.066 67.153 1 1 B CYS 0.630 1 ATOM 36 C C . CYS 24 24 ? A 40.657 -40.115 66.003 1 1 B CYS 0.630 1 ATOM 37 O O . CYS 24 24 ? A 41.549 -39.266 66.005 1 1 B CYS 0.630 1 ATOM 38 C CB . CYS 24 24 ? A 39.315 -40.578 68.061 1 1 B CYS 0.630 1 ATOM 39 S SG . CYS 24 24 ? A 39.065 -41.584 69.554 1 1 B CYS 0.630 1 ATOM 40 N N . LEU 25 25 ? A 39.845 -40.249 64.943 1 1 B LEU 0.570 1 ATOM 41 C CA . LEU 25 25 ? A 39.786 -39.246 63.900 1 1 B LEU 0.570 1 ATOM 42 C C . LEU 25 25 ? A 39.209 -37.931 64.413 1 1 B LEU 0.570 1 ATOM 43 O O . LEU 25 25 ? A 38.273 -37.957 65.208 1 1 B LEU 0.570 1 ATOM 44 C CB . LEU 25 25 ? A 38.981 -39.778 62.694 1 1 B LEU 0.570 1 ATOM 45 C CG . LEU 25 25 ? A 39.638 -40.997 62.021 1 1 B LEU 0.570 1 ATOM 46 C CD1 . LEU 25 25 ? A 38.770 -41.527 60.877 1 1 B LEU 0.570 1 ATOM 47 C CD2 . LEU 25 25 ? A 41.010 -40.638 61.442 1 1 B LEU 0.570 1 ATOM 48 N N . GLU 26 26 ? A 39.757 -36.771 63.993 1 1 B GLU 0.580 1 ATOM 49 C CA . GLU 26 26 ? A 39.325 -35.470 64.483 1 1 B GLU 0.580 1 ATOM 50 C C . GLU 26 26 ? A 39.240 -34.476 63.352 1 1 B GLU 0.580 1 ATOM 51 O O . GLU 26 26 ? A 40.233 -33.877 62.934 1 1 B GLU 0.580 1 ATOM 52 C CB . GLU 26 26 ? A 40.313 -34.906 65.509 1 1 B GLU 0.580 1 ATOM 53 C CG . GLU 26 26 ? A 39.908 -33.519 66.081 1 1 B GLU 0.580 1 ATOM 54 C CD . GLU 26 26 ? A 40.883 -33.043 67.155 1 1 B GLU 0.580 1 ATOM 55 O OE1 . GLU 26 26 ? A 40.726 -31.899 67.653 1 1 B GLU 0.580 1 ATOM 56 O OE2 . GLU 26 26 ? A 41.852 -33.793 67.449 1 1 B GLU 0.580 1 ATOM 57 N N . CYS 27 27 ? A 38.045 -34.334 62.761 1 1 B CYS 0.580 1 ATOM 58 C CA . CYS 27 27 ? A 37.862 -33.570 61.545 1 1 B CYS 0.580 1 ATOM 59 C C . CYS 27 27 ? A 36.436 -33.038 61.496 1 1 B CYS 0.580 1 ATOM 60 O O . CYS 27 27 ? A 35.486 -33.795 61.711 1 1 B CYS 0.580 1 ATOM 61 C CB . CYS 27 27 ? A 38.196 -34.431 60.280 1 1 B CYS 0.580 1 ATOM 62 S SG . CYS 27 27 ? A 39.924 -35.013 60.207 1 1 B CYS 0.580 1 ATOM 63 N N . ASP 28 28 ? A 36.263 -31.730 61.193 1 1 B ASP 0.570 1 ATOM 64 C CA . ASP 28 28 ? A 34.996 -31.015 61.198 1 1 B ASP 0.570 1 ATOM 65 C C . ASP 28 28 ? A 34.190 -31.154 59.905 1 1 B ASP 0.570 1 ATOM 66 O O . ASP 28 28 ? A 34.725 -31.014 58.807 1 1 B ASP 0.570 1 ATOM 67 C CB . ASP 28 28 ? A 35.206 -29.519 61.579 1 1 B ASP 0.570 1 ATOM 68 C CG . ASP 28 28 ? A 35.684 -29.419 63.017 1 1 B ASP 0.570 1 ATOM 69 O OD1 . ASP 28 28 ? A 35.209 -30.249 63.827 1 1 B ASP 0.570 1 ATOM 70 O OD2 . ASP 28 28 ? A 36.483 -28.496 63.305 1 1 B ASP 0.570 1 ATOM 71 N N . MET 29 29 ? A 32.869 -31.460 60.047 1 1 B MET 0.530 1 ATOM 72 C CA . MET 29 29 ? A 31.812 -31.500 59.028 1 1 B MET 0.530 1 ATOM 73 C C . MET 29 29 ? A 32.251 -31.812 57.585 1 1 B MET 0.530 1 ATOM 74 O O . MET 29 29 ? A 32.134 -30.997 56.676 1 1 B MET 0.530 1 ATOM 75 C CB . MET 29 29 ? A 30.923 -30.230 59.132 1 1 B MET 0.530 1 ATOM 76 C CG . MET 29 29 ? A 30.115 -30.128 60.455 1 1 B MET 0.530 1 ATOM 77 S SD . MET 29 29 ? A 28.939 -31.496 60.756 1 1 B MET 0.530 1 ATOM 78 C CE . MET 29 29 ? A 27.771 -31.057 59.435 1 1 B MET 0.530 1 ATOM 79 N N . LEU 30 30 ? A 32.770 -33.025 57.317 1 1 B LEU 0.550 1 ATOM 80 C CA . LEU 30 30 ? A 33.212 -33.390 55.988 1 1 B LEU 0.550 1 ATOM 81 C C . LEU 30 30 ? A 32.141 -33.972 55.137 1 1 B LEU 0.550 1 ATOM 82 O O . LEU 30 30 ? A 31.273 -34.677 55.635 1 1 B LEU 0.550 1 ATOM 83 C CB . LEU 30 30 ? A 34.230 -34.510 56.076 1 1 B LEU 0.550 1 ATOM 84 C CG . LEU 30 30 ? A 35.604 -33.974 56.410 1 1 B LEU 0.550 1 ATOM 85 C CD1 . LEU 30 30 ? A 36.454 -35.204 56.626 1 1 B LEU 0.550 1 ATOM 86 C CD2 . LEU 30 30 ? A 36.246 -33.111 55.298 1 1 B LEU 0.550 1 ATOM 87 N N . ASN 31 31 ? A 32.196 -33.703 53.818 1 1 B ASN 0.520 1 ATOM 88 C CA . ASN 31 31 ? A 31.274 -34.222 52.821 1 1 B ASN 0.520 1 ATOM 89 C C . ASN 31 31 ? A 31.273 -35.758 52.755 1 1 B ASN 0.520 1 ATOM 90 O O . ASN 31 31 ? A 32.219 -36.409 53.190 1 1 B ASN 0.520 1 ATOM 91 C CB . ASN 31 31 ? A 31.440 -33.524 51.428 1 1 B ASN 0.520 1 ATOM 92 C CG . ASN 31 31 ? A 32.774 -33.871 50.768 1 1 B ASN 0.520 1 ATOM 93 O OD1 . ASN 31 31 ? A 32.891 -34.882 50.111 1 1 B ASN 0.520 1 ATOM 94 N ND2 . ASN 31 31 ? A 33.811 -33.009 50.934 1 1 B ASN 0.520 1 ATOM 95 N N . SER 32 32 ? A 30.184 -36.354 52.227 1 1 B SER 0.520 1 ATOM 96 C CA . SER 32 32 ? A 29.974 -37.788 52.052 1 1 B SER 0.520 1 ATOM 97 C C . SER 32 32 ? A 31.129 -38.594 51.481 1 1 B SER 0.520 1 ATOM 98 O O . SER 32 32 ? A 31.506 -39.617 52.052 1 1 B SER 0.520 1 ATOM 99 C CB . SER 32 32 ? A 28.688 -38.077 51.215 1 1 B SER 0.520 1 ATOM 100 O OG . SER 32 32 ? A 28.552 -37.310 50.022 1 1 B SER 0.520 1 ATOM 101 N N . ASP 33 33 ? A 31.742 -38.129 50.384 1 1 B ASP 0.450 1 ATOM 102 C CA . ASP 33 33 ? A 32.862 -38.781 49.745 1 1 B ASP 0.450 1 ATOM 103 C C . ASP 33 33 ? A 34.152 -38.019 50.066 1 1 B ASP 0.450 1 ATOM 104 O O . ASP 33 33 ? A 34.866 -37.506 49.203 1 1 B ASP 0.450 1 ATOM 105 C CB . ASP 33 33 ? A 32.601 -38.929 48.221 1 1 B ASP 0.450 1 ATOM 106 C CG . ASP 33 33 ? A 31.499 -39.945 47.932 1 1 B ASP 0.450 1 ATOM 107 O OD1 . ASP 33 33 ? A 31.779 -40.847 47.100 1 1 B ASP 0.450 1 ATOM 108 O OD2 . ASP 33 33 ? A 30.377 -39.837 48.494 1 1 B ASP 0.450 1 ATOM 109 N N . GLY 34 34 ? A 34.504 -37.946 51.367 1 1 B GLY 0.520 1 ATOM 110 C CA . GLY 34 34 ? A 35.741 -37.322 51.809 1 1 B GLY 0.520 1 ATOM 111 C C . GLY 34 34 ? A 36.248 -37.936 53.088 1 1 B GLY 0.520 1 ATOM 112 O O . GLY 34 34 ? A 35.471 -38.284 53.970 1 1 B GLY 0.520 1 ATOM 113 N N . ILE 35 35 ? A 37.581 -38.074 53.257 1 1 B ILE 0.490 1 ATOM 114 C CA . ILE 35 35 ? A 38.181 -38.624 54.472 1 1 B ILE 0.490 1 ATOM 115 C C . ILE 35 35 ? A 39.262 -37.658 54.908 1 1 B ILE 0.490 1 ATOM 116 O O . ILE 35 35 ? A 40.067 -37.194 54.103 1 1 B ILE 0.490 1 ATOM 117 C CB . ILE 35 35 ? A 38.805 -40.020 54.293 1 1 B ILE 0.490 1 ATOM 118 C CG1 . ILE 35 35 ? A 37.721 -41.040 53.855 1 1 B ILE 0.490 1 ATOM 119 C CG2 . ILE 35 35 ? A 39.510 -40.497 55.599 1 1 B ILE 0.490 1 ATOM 120 C CD1 . ILE 35 35 ? A 38.294 -42.392 53.403 1 1 B ILE 0.490 1 ATOM 121 N N . CYS 36 36 ? A 39.324 -37.315 56.204 1 1 B CYS 0.460 1 ATOM 122 C CA . CYS 36 36 ? A 40.410 -36.549 56.767 1 1 B CYS 0.460 1 ATOM 123 C C . CYS 36 36 ? A 40.968 -37.438 57.843 1 1 B CYS 0.460 1 ATOM 124 O O . CYS 36 36 ? A 40.294 -37.770 58.812 1 1 B CYS 0.460 1 ATOM 125 C CB . CYS 36 36 ? A 39.817 -35.217 57.287 1 1 B CYS 0.460 1 ATOM 126 S SG . CYS 36 36 ? A 40.661 -34.189 58.516 1 1 B CYS 0.460 1 ATOM 127 N N . GLU 37 37 ? A 42.209 -37.910 57.644 1 1 B GLU 0.500 1 ATOM 128 C CA . GLU 37 37 ? A 42.822 -38.855 58.545 1 1 B GLU 0.500 1 ATOM 129 C C . GLU 37 37 ? A 44.040 -38.284 59.248 1 1 B GLU 0.500 1 ATOM 130 O O . GLU 37 37 ? A 44.373 -38.634 60.375 1 1 B GLU 0.500 1 ATOM 131 C CB . GLU 37 37 ? A 43.193 -40.097 57.732 1 1 B GLU 0.500 1 ATOM 132 C CG . GLU 37 37 ? A 43.811 -41.208 58.601 1 1 B GLU 0.500 1 ATOM 133 C CD . GLU 37 37 ? A 44.105 -42.456 57.785 1 1 B GLU 0.500 1 ATOM 134 O OE1 . GLU 37 37 ? A 43.730 -42.489 56.586 1 1 B GLU 0.500 1 ATOM 135 O OE2 . GLU 37 37 ? A 44.769 -43.352 58.362 1 1 B GLU 0.500 1 ATOM 136 N N . LYS 38 38 ? A 44.702 -37.276 58.643 1 1 B LYS 0.350 1 ATOM 137 C CA . LYS 38 38 ? A 45.991 -36.796 59.112 1 1 B LYS 0.350 1 ATOM 138 C C . LYS 38 38 ? A 45.882 -35.834 60.288 1 1 B LYS 0.350 1 ATOM 139 O O . LYS 38 38 ? A 46.883 -35.346 60.786 1 1 B LYS 0.350 1 ATOM 140 C CB . LYS 38 38 ? A 46.733 -36.060 57.966 1 1 B LYS 0.350 1 ATOM 141 C CG . LYS 38 38 ? A 47.159 -36.986 56.818 1 1 B LYS 0.350 1 ATOM 142 C CD . LYS 38 38 ? A 47.907 -36.207 55.725 1 1 B LYS 0.350 1 ATOM 143 C CE . LYS 38 38 ? A 48.378 -37.105 54.577 1 1 B LYS 0.350 1 ATOM 144 N NZ . LYS 38 38 ? A 49.064 -36.296 53.544 1 1 B LYS 0.350 1 ATOM 145 N N . GLY 39 39 ? A 44.639 -35.576 60.756 1 1 B GLY 0.490 1 ATOM 146 C CA . GLY 39 39 ? A 44.352 -34.783 61.943 1 1 B GLY 0.490 1 ATOM 147 C C . GLY 39 39 ? A 44.064 -35.613 63.165 1 1 B GLY 0.490 1 ATOM 148 O O . GLY 39 39 ? A 43.738 -35.058 64.196 1 1 B GLY 0.490 1 ATOM 149 N N . ASN 40 40 ? A 44.132 -36.967 63.071 1 1 B ASN 0.530 1 ATOM 150 C CA . ASN 40 40 ? A 44.016 -37.904 64.191 1 1 B ASN 0.530 1 ATOM 151 C C . ASN 40 40 ? A 44.677 -37.494 65.514 1 1 B ASN 0.530 1 ATOM 152 O O . ASN 40 40 ? A 45.816 -37.036 65.554 1 1 B ASN 0.530 1 ATOM 153 C CB . ASN 40 40 ? A 44.427 -39.356 63.780 1 1 B ASN 0.530 1 ATOM 154 C CG . ASN 40 40 ? A 45.928 -39.456 63.494 1 1 B ASN 0.530 1 ATOM 155 O OD1 . ASN 40 40 ? A 46.730 -39.663 64.392 1 1 B ASN 0.530 1 ATOM 156 N ND2 . ASN 40 40 ? A 46.345 -39.323 62.216 1 1 B ASN 0.530 1 ATOM 157 N N . SER 41 41 ? A 43.975 -37.682 66.643 1 1 B SER 0.570 1 ATOM 158 C CA . SER 41 41 ? A 44.492 -37.217 67.909 1 1 B SER 0.570 1 ATOM 159 C C . SER 41 41 ? A 44.305 -38.294 68.942 1 1 B SER 0.570 1 ATOM 160 O O . SER 41 41 ? A 43.305 -39.014 68.980 1 1 B SER 0.570 1 ATOM 161 C CB . SER 41 41 ? A 43.898 -35.847 68.303 1 1 B SER 0.570 1 ATOM 162 O OG . SER 41 41 ? A 44.523 -35.295 69.457 1 1 B SER 0.570 1 ATOM 163 N N . THR 42 42 ? A 45.369 -38.506 69.743 1 1 B THR 0.560 1 ATOM 164 C CA . THR 42 42 ? A 45.374 -39.330 70.943 1 1 B THR 0.560 1 ATOM 165 C C . THR 42 42 ? A 44.551 -38.685 72.032 1 1 B THR 0.560 1 ATOM 166 O O . THR 42 42 ? A 44.538 -37.475 72.206 1 1 B THR 0.560 1 ATOM 167 C CB . THR 42 42 ? A 46.762 -39.703 71.514 1 1 B THR 0.560 1 ATOM 168 O OG1 . THR 42 42 ? A 47.541 -38.582 71.894 1 1 B THR 0.560 1 ATOM 169 C CG2 . THR 42 42 ? A 47.614 -40.411 70.458 1 1 B THR 0.560 1 ATOM 170 N N . CYS 43 43 ? A 43.842 -39.503 72.832 1 1 B CYS 0.560 1 ATOM 171 C CA . CYS 43 43 ? A 42.989 -38.977 73.879 1 1 B CYS 0.560 1 ATOM 172 C C . CYS 43 43 ? A 43.597 -39.309 75.256 1 1 B CYS 0.560 1 ATOM 173 O O . CYS 43 43 ? A 42.909 -39.244 76.273 1 1 B CYS 0.560 1 ATOM 174 C CB . CYS 43 43 ? A 41.519 -39.536 73.801 1 1 B CYS 0.560 1 ATOM 175 S SG . CYS 43 43 ? A 40.691 -39.830 72.192 1 1 B CYS 0.560 1 ATOM 176 N N . GLU 44 44 ? A 44.919 -39.663 75.308 1 1 B GLU 0.350 1 ATOM 177 C CA . GLU 44 44 ? A 45.693 -40.176 76.452 1 1 B GLU 0.350 1 ATOM 178 C C . GLU 44 44 ? A 45.659 -39.310 77.698 1 1 B GLU 0.350 1 ATOM 179 O O . GLU 44 44 ? A 45.556 -39.824 78.791 1 1 B GLU 0.350 1 ATOM 180 C CB . GLU 44 44 ? A 47.191 -40.403 76.108 1 1 B GLU 0.350 1 ATOM 181 C CG . GLU 44 44 ? A 48.087 -40.932 77.273 1 1 B GLU 0.350 1 ATOM 182 C CD . GLU 44 44 ? A 49.534 -41.094 76.812 1 1 B GLU 0.350 1 ATOM 183 O OE1 . GLU 44 44 ? A 50.386 -41.483 77.647 1 1 B GLU 0.350 1 ATOM 184 O OE2 . GLU 44 44 ? A 49.794 -40.821 75.608 1 1 B GLU 0.350 1 ATOM 185 N N . ALA 45 45 ? A 45.695 -37.965 77.589 1 1 B ALA 0.310 1 ATOM 186 C CA . ALA 45 45 ? A 45.655 -37.082 78.747 1 1 B ALA 0.310 1 ATOM 187 C C . ALA 45 45 ? A 44.451 -37.262 79.689 1 1 B ALA 0.310 1 ATOM 188 O O . ALA 45 45 ? A 44.536 -36.955 80.873 1 1 B ALA 0.310 1 ATOM 189 C CB . ALA 45 45 ? A 45.675 -35.614 78.264 1 1 B ALA 0.310 1 ATOM 190 N N . LYS 46 46 ? A 43.296 -37.731 79.163 1 1 B LYS 0.390 1 ATOM 191 C CA . LYS 46 46 ? A 42.109 -37.974 79.962 1 1 B LYS 0.390 1 ATOM 192 C C . LYS 46 46 ? A 41.851 -39.448 80.249 1 1 B LYS 0.390 1 ATOM 193 O O . LYS 46 46 ? A 41.256 -39.770 81.268 1 1 B LYS 0.390 1 ATOM 194 C CB . LYS 46 46 ? A 40.885 -37.387 79.230 1 1 B LYS 0.390 1 ATOM 195 C CG . LYS 46 46 ? A 40.981 -35.864 79.100 1 1 B LYS 0.390 1 ATOM 196 C CD . LYS 46 46 ? A 39.732 -35.298 78.429 1 1 B LYS 0.390 1 ATOM 197 C CE . LYS 46 46 ? A 39.776 -33.780 78.290 1 1 B LYS 0.390 1 ATOM 198 N NZ . LYS 46 46 ? A 38.562 -33.315 77.592 1 1 B LYS 0.390 1 ATOM 199 N N . GLU 47 47 ? A 42.312 -40.380 79.379 1 1 B GLU 0.340 1 ATOM 200 C CA . GLU 47 47 ? A 42.171 -41.826 79.566 1 1 B GLU 0.340 1 ATOM 201 C C . GLU 47 47 ? A 40.733 -42.376 79.673 1 1 B GLU 0.340 1 ATOM 202 O O . GLU 47 47 ? A 40.509 -43.473 80.181 1 1 B GLU 0.340 1 ATOM 203 C CB . GLU 47 47 ? A 43.055 -42.368 80.728 1 1 B GLU 0.340 1 ATOM 204 C CG . GLU 47 47 ? A 44.569 -42.092 80.554 1 1 B GLU 0.340 1 ATOM 205 C CD . GLU 47 47 ? A 45.446 -42.713 81.639 1 1 B GLU 0.340 1 ATOM 206 O OE1 . GLU 47 47 ? A 44.899 -43.205 82.659 1 1 B GLU 0.340 1 ATOM 207 O OE2 . GLU 47 47 ? A 46.685 -42.736 81.430 1 1 B GLU 0.340 1 ATOM 208 N N . ASP 48 48 ? A 39.722 -41.663 79.132 1 1 B ASP 0.520 1 ATOM 209 C CA . ASP 48 48 ? A 38.332 -42.024 79.335 1 1 B ASP 0.520 1 ATOM 210 C C . ASP 48 48 ? A 37.464 -41.652 78.139 1 1 B ASP 0.520 1 ATOM 211 O O . ASP 48 48 ? A 36.309 -42.055 78.028 1 1 B ASP 0.520 1 ATOM 212 C CB . ASP 48 48 ? A 37.835 -41.316 80.639 1 1 B ASP 0.520 1 ATOM 213 C CG . ASP 48 48 ? A 37.829 -39.785 80.621 1 1 B ASP 0.520 1 ATOM 214 O OD1 . ASP 48 48 ? A 37.345 -39.212 81.631 1 1 B ASP 0.520 1 ATOM 215 O OD2 . ASP 48 48 ? A 38.258 -39.164 79.609 1 1 B ASP 0.520 1 ATOM 216 N N . GLN 49 49 ? A 38.025 -40.894 77.176 1 1 B GLN 0.540 1 ATOM 217 C CA . GLN 49 49 ? A 37.312 -40.467 76.004 1 1 B GLN 0.540 1 ATOM 218 C C . GLN 49 49 ? A 37.059 -41.584 75.032 1 1 B GLN 0.540 1 ATOM 219 O O . GLN 49 49 ? A 37.851 -42.509 74.863 1 1 B GLN 0.540 1 ATOM 220 C CB . GLN 49 49 ? A 38.027 -39.297 75.284 1 1 B GLN 0.540 1 ATOM 221 C CG . GLN 49 49 ? A 37.975 -38.001 76.133 1 1 B GLN 0.540 1 ATOM 222 C CD . GLN 49 49 ? A 38.596 -36.793 75.430 1 1 B GLN 0.540 1 ATOM 223 O OE1 . GLN 49 49 ? A 39.722 -36.804 74.976 1 1 B GLN 0.540 1 ATOM 224 N NE2 . GLN 49 49 ? A 37.837 -35.664 75.339 1 1 B GLN 0.540 1 ATOM 225 N N . GLU 50 50 ? A 35.932 -41.480 74.331 1 1 B GLU 0.580 1 ATOM 226 C CA . GLU 50 50 ? A 35.544 -42.449 73.359 1 1 B GLU 0.580 1 ATOM 227 C C . GLU 50 50 ? A 35.459 -41.728 72.045 1 1 B GLU 0.580 1 ATOM 228 O O . GLU 50 50 ? A 35.139 -40.533 71.981 1 1 B GLU 0.580 1 ATOM 229 C CB . GLU 50 50 ? A 34.215 -43.085 73.799 1 1 B GLU 0.580 1 ATOM 230 C CG . GLU 50 50 ? A 33.706 -44.197 72.865 1 1 B GLU 0.580 1 ATOM 231 C CD . GLU 50 50 ? A 32.482 -44.929 73.402 1 1 B GLU 0.580 1 ATOM 232 O OE1 . GLU 50 50 ? A 31.995 -45.818 72.659 1 1 B GLU 0.580 1 ATOM 233 O OE2 . GLU 50 50 ? A 31.982 -44.565 74.495 1 1 B GLU 0.580 1 ATOM 234 N N . CYS 51 51 ? A 35.844 -42.406 70.952 1 1 B CYS 0.640 1 ATOM 235 C CA . CYS 51 51 ? A 35.775 -41.858 69.620 1 1 B CYS 0.640 1 ATOM 236 C C . CYS 51 51 ? A 34.336 -41.667 69.156 1 1 B CYS 0.640 1 ATOM 237 O O . CYS 51 51 ? A 33.485 -42.520 69.410 1 1 B CYS 0.640 1 ATOM 238 C CB . CYS 51 51 ? A 36.462 -42.790 68.589 1 1 B CYS 0.640 1 ATOM 239 S SG . CYS 51 51 ? A 38.188 -43.279 68.892 1 1 B CYS 0.640 1 ATOM 240 N N . GLY 52 52 ? A 34.013 -40.566 68.446 1 1 B GLY 0.690 1 ATOM 241 C CA . GLY 52 52 ? A 32.647 -40.317 68.010 1 1 B GLY 0.690 1 ATOM 242 C C . GLY 52 52 ? A 32.545 -39.887 66.592 1 1 B GLY 0.690 1 ATOM 243 O O . GLY 52 52 ? A 33.492 -39.310 66.042 1 1 B GLY 0.690 1 ATOM 244 N N . ILE 53 53 ? A 31.378 -40.143 65.982 1 1 B ILE 0.650 1 ATOM 245 C CA . ILE 53 53 ? A 30.987 -39.666 64.669 1 1 B ILE 0.650 1 ATOM 246 C C . ILE 53 53 ? A 29.648 -39.012 64.808 1 1 B ILE 0.650 1 ATOM 247 O O . ILE 53 53 ? A 28.787 -39.496 65.539 1 1 B ILE 0.650 1 ATOM 248 C CB . ILE 53 53 ? A 30.916 -40.779 63.605 1 1 B ILE 0.650 1 ATOM 249 C CG1 . ILE 53 53 ? A 32.288 -41.342 63.276 1 1 B ILE 0.650 1 ATOM 250 C CG2 . ILE 53 53 ? A 30.250 -40.357 62.281 1 1 B ILE 0.650 1 ATOM 251 C CD1 . ILE 53 53 ? A 33.084 -40.292 62.515 1 1 B ILE 0.650 1 ATOM 252 N N . LEU 54 54 ? A 29.457 -37.868 64.128 1 1 B LEU 0.630 1 ATOM 253 C CA . LEU 54 54 ? A 28.171 -37.246 63.939 1 1 B LEU 0.630 1 ATOM 254 C C . LEU 54 54 ? A 27.913 -37.147 62.447 1 1 B LEU 0.630 1 ATOM 255 O O . LEU 54 54 ? A 28.667 -36.471 61.735 1 1 B LEU 0.630 1 ATOM 256 C CB . LEU 54 54 ? A 28.138 -35.839 64.588 1 1 B LEU 0.630 1 ATOM 257 C CG . LEU 54 54 ? A 26.724 -35.338 64.954 1 1 B LEU 0.630 1 ATOM 258 C CD1 . LEU 54 54 ? A 26.822 -34.398 66.168 1 1 B LEU 0.630 1 ATOM 259 C CD2 . LEU 54 54 ? A 25.977 -34.650 63.793 1 1 B LEU 0.630 1 ATOM 260 N N . VAL 55 55 ? A 26.867 -37.808 61.919 1 1 B VAL 0.640 1 ATOM 261 C CA . VAL 55 55 ? A 26.515 -37.788 60.506 1 1 B VAL 0.640 1 ATOM 262 C C . VAL 55 55 ? A 25.223 -37.037 60.339 1 1 B VAL 0.640 1 ATOM 263 O O . VAL 55 55 ? A 24.323 -37.107 61.185 1 1 B VAL 0.640 1 ATOM 264 C CB . VAL 55 55 ? A 26.416 -39.161 59.825 1 1 B VAL 0.640 1 ATOM 265 C CG1 . VAL 55 55 ? A 27.769 -39.866 59.941 1 1 B VAL 0.640 1 ATOM 266 C CG2 . VAL 55 55 ? A 25.387 -40.056 60.528 1 1 B VAL 0.640 1 ATOM 267 N N . VAL 56 56 ? A 25.115 -36.244 59.267 1 1 B VAL 0.660 1 ATOM 268 C CA . VAL 56 56 ? A 23.958 -35.406 58.998 1 1 B VAL 0.660 1 ATOM 269 C C . VAL 56 56 ? A 23.456 -35.701 57.626 1 1 B VAL 0.660 1 ATOM 270 O O . VAL 56 56 ? A 24.214 -35.540 56.670 1 1 B VAL 0.660 1 ATOM 271 C CB . VAL 56 56 ? A 24.269 -33.909 59.008 1 1 B VAL 0.660 1 ATOM 272 C CG1 . VAL 56 56 ? A 22.993 -33.086 58.687 1 1 B VAL 0.660 1 ATOM 273 C CG2 . VAL 56 56 ? A 24.806 -33.558 60.404 1 1 B VAL 0.660 1 ATOM 274 N N . SER 57 57 ? A 22.184 -36.097 57.472 1 1 B SER 0.540 1 ATOM 275 C CA . SER 57 57 ? A 21.574 -36.328 56.177 1 1 B SER 0.540 1 ATOM 276 C C . SER 57 57 ? A 20.362 -35.418 56.027 1 1 B SER 0.540 1 ATOM 277 O O . SER 57 57 ? A 19.361 -35.581 56.731 1 1 B SER 0.540 1 ATOM 278 C CB . SER 57 57 ? A 21.170 -37.828 56.050 1 1 B SER 0.540 1 ATOM 279 O OG . SER 57 57 ? A 20.634 -38.130 54.770 1 1 B SER 0.540 1 ATOM 280 N N . GLN 58 58 ? A 20.410 -34.409 55.126 1 1 B GLN 0.390 1 ATOM 281 C CA . GLN 58 58 ? A 19.269 -33.544 54.840 1 1 B GLN 0.390 1 ATOM 282 C C . GLN 58 58 ? A 18.524 -34.114 53.659 1 1 B GLN 0.390 1 ATOM 283 O O . GLN 58 58 ? A 18.787 -33.763 52.514 1 1 B GLN 0.390 1 ATOM 284 C CB . GLN 58 58 ? A 19.702 -32.095 54.480 1 1 B GLN 0.390 1 ATOM 285 C CG . GLN 58 58 ? A 18.522 -31.111 54.255 1 1 B GLN 0.390 1 ATOM 286 C CD . GLN 58 58 ? A 19.057 -29.685 54.102 1 1 B GLN 0.390 1 ATOM 287 O OE1 . GLN 58 58 ? A 20.001 -29.407 53.387 1 1 B GLN 0.390 1 ATOM 288 N NE2 . GLN 58 58 ? A 18.453 -28.726 54.850 1 1 B GLN 0.390 1 ATOM 289 N N . GLY 59 59 ? A 17.595 -35.067 53.895 1 1 B GLY 0.450 1 ATOM 290 C CA . GLY 59 59 ? A 17.134 -35.960 52.830 1 1 B GLY 0.450 1 ATOM 291 C C . GLY 59 59 ? A 18.260 -36.592 52.037 1 1 B GLY 0.450 1 ATOM 292 O O . GLY 59 59 ? A 19.262 -37.023 52.597 1 1 B GLY 0.450 1 ATOM 293 N N . VAL 60 60 ? A 18.157 -36.662 50.709 1 1 B VAL 0.390 1 ATOM 294 C CA . VAL 60 60 ? A 19.231 -37.150 49.864 1 1 B VAL 0.390 1 ATOM 295 C C . VAL 60 60 ? A 20.242 -36.066 49.486 1 1 B VAL 0.390 1 ATOM 296 O O . VAL 60 60 ? A 21.287 -36.388 48.914 1 1 B VAL 0.390 1 ATOM 297 C CB . VAL 60 60 ? A 18.645 -37.725 48.575 1 1 B VAL 0.390 1 ATOM 298 C CG1 . VAL 60 60 ? A 17.752 -38.937 48.934 1 1 B VAL 0.390 1 ATOM 299 C CG2 . VAL 60 60 ? A 17.859 -36.642 47.790 1 1 B VAL 0.390 1 ATOM 300 N N . ASP 61 61 ? A 19.953 -34.770 49.771 1 1 B ASP 0.510 1 ATOM 301 C CA . ASP 61 61 ? A 20.615 -33.604 49.205 1 1 B ASP 0.510 1 ATOM 302 C C . ASP 61 61 ? A 22.069 -33.482 49.630 1 1 B ASP 0.510 1 ATOM 303 O O . ASP 61 61 ? A 22.974 -33.265 48.828 1 1 B ASP 0.510 1 ATOM 304 C CB . ASP 61 61 ? A 19.843 -32.301 49.596 1 1 B ASP 0.510 1 ATOM 305 C CG . ASP 61 61 ? A 18.471 -32.240 48.938 1 1 B ASP 0.510 1 ATOM 306 O OD1 . ASP 61 61 ? A 18.215 -33.037 48.000 1 1 B ASP 0.510 1 ATOM 307 O OD2 . ASP 61 61 ? A 17.660 -31.384 49.374 1 1 B ASP 0.510 1 ATOM 308 N N . ILE 62 62 ? A 22.334 -33.652 50.936 1 1 B ILE 0.550 1 ATOM 309 C CA . ILE 62 62 ? A 23.678 -33.502 51.440 1 1 B ILE 0.550 1 ATOM 310 C C . ILE 62 62 ? A 23.885 -34.442 52.595 1 1 B ILE 0.550 1 ATOM 311 O O . ILE 62 62 ? A 23.040 -34.601 53.467 1 1 B ILE 0.550 1 ATOM 312 C CB . ILE 62 62 ? A 24.009 -32.045 51.791 1 1 B ILE 0.550 1 ATOM 313 C CG1 . ILE 62 62 ? A 25.496 -31.807 52.142 1 1 B ILE 0.550 1 ATOM 314 C CG2 . ILE 62 62 ? A 23.070 -31.469 52.884 1 1 B ILE 0.550 1 ATOM 315 C CD1 . ILE 62 62 ? A 26.488 -31.985 50.982 1 1 B ILE 0.550 1 ATOM 316 N N . LEU 63 63 ? A 25.061 -35.107 52.601 1 1 B LEU 0.570 1 ATOM 317 C CA . LEU 63 63 ? A 25.495 -35.904 53.718 1 1 B LEU 0.570 1 ATOM 318 C C . LEU 63 63 ? A 26.838 -35.370 54.185 1 1 B LEU 0.570 1 ATOM 319 O O . LEU 63 63 ? A 27.754 -35.167 53.389 1 1 B LEU 0.570 1 ATOM 320 C CB . LEU 63 63 ? A 25.517 -37.410 53.348 1 1 B LEU 0.570 1 ATOM 321 C CG . LEU 63 63 ? A 26.232 -38.378 54.329 1 1 B LEU 0.570 1 ATOM 322 C CD1 . LEU 63 63 ? A 25.566 -38.434 55.717 1 1 B LEU 0.570 1 ATOM 323 C CD2 . LEU 63 63 ? A 26.278 -39.797 53.733 1 1 B LEU 0.570 1 ATOM 324 N N . PHE 64 64 ? A 26.957 -35.106 55.503 1 1 B PHE 0.550 1 ATOM 325 C CA . PHE 64 64 ? A 28.174 -34.646 56.147 1 1 B PHE 0.550 1 ATOM 326 C C . PHE 64 64 ? A 28.514 -35.546 57.323 1 1 B PHE 0.550 1 ATOM 327 O O . PHE 64 64 ? A 27.642 -36.214 57.877 1 1 B PHE 0.550 1 ATOM 328 C CB . PHE 64 64 ? A 28.055 -33.205 56.727 1 1 B PHE 0.550 1 ATOM 329 C CG . PHE 64 64 ? A 28.067 -32.136 55.668 1 1 B PHE 0.550 1 ATOM 330 C CD1 . PHE 64 64 ? A 29.239 -31.914 54.936 1 1 B PHE 0.550 1 ATOM 331 C CD2 . PHE 64 64 ? A 26.976 -31.278 55.454 1 1 B PHE 0.550 1 ATOM 332 C CE1 . PHE 64 64 ? A 29.312 -30.932 53.945 1 1 B PHE 0.550 1 ATOM 333 C CE2 . PHE 64 64 ? A 27.064 -30.237 54.516 1 1 B PHE 0.550 1 ATOM 334 C CZ . PHE 64 64 ? A 28.215 -30.094 53.728 1 1 B PHE 0.550 1 ATOM 335 N N . GLY 65 65 ? A 29.803 -35.569 57.727 1 1 B GLY 0.590 1 ATOM 336 C CA . GLY 65 65 ? A 30.342 -36.377 58.809 1 1 B GLY 0.590 1 ATOM 337 C C . GLY 65 65 ? A 31.430 -35.666 59.574 1 1 B GLY 0.590 1 ATOM 338 O O . GLY 65 65 ? A 32.455 -35.262 59.022 1 1 B GLY 0.590 1 ATOM 339 N N . MET 66 66 ? A 31.245 -35.507 60.892 1 1 B MET 0.560 1 ATOM 340 C CA . MET 66 66 ? A 32.208 -34.920 61.807 1 1 B MET 0.560 1 ATOM 341 C C . MET 66 66 ? A 32.662 -35.946 62.822 1 1 B MET 0.560 1 ATOM 342 O O . MET 66 66 ? A 31.881 -36.807 63.226 1 1 B MET 0.560 1 ATOM 343 C CB . MET 66 66 ? A 31.588 -33.734 62.580 1 1 B MET 0.560 1 ATOM 344 C CG . MET 66 66 ? A 32.557 -33.038 63.559 1 1 B MET 0.560 1 ATOM 345 S SD . MET 66 66 ? A 31.942 -31.456 64.180 1 1 B MET 0.560 1 ATOM 346 C CE . MET 66 66 ? A 30.923 -32.279 65.434 1 1 B MET 0.560 1 ATOM 347 N N . GLN 67 67 ? A 33.926 -35.881 63.274 1 1 B GLN 0.580 1 ATOM 348 C CA . GLN 67 67 ? A 34.514 -36.858 64.161 1 1 B GLN 0.580 1 ATOM 349 C C . GLN 67 67 ? A 35.379 -36.152 65.165 1 1 B GLN 0.580 1 ATOM 350 O O . GLN 67 67 ? A 36.029 -35.184 64.786 1 1 B GLN 0.580 1 ATOM 351 C CB . GLN 67 67 ? A 35.448 -37.862 63.419 1 1 B GLN 0.580 1 ATOM 352 C CG . GLN 67 67 ? A 36.182 -37.388 62.131 1 1 B GLN 0.580 1 ATOM 353 C CD . GLN 67 67 ? A 35.303 -37.357 60.892 1 1 B GLN 0.580 1 ATOM 354 O OE1 . GLN 67 67 ? A 34.719 -38.392 60.517 1 1 B GLN 0.580 1 ATOM 355 N NE2 . GLN 67 67 ? A 35.158 -36.212 60.219 1 1 B GLN 0.580 1 ATOM 356 N N . ASP 68 68 ? A 35.404 -36.644 66.435 1 1 B ASP 0.590 1 ATOM 357 C CA . ASP 68 68 ? A 36.295 -36.145 67.466 1 1 B ASP 0.590 1 ATOM 358 C C . ASP 68 68 ? A 36.444 -37.161 68.642 1 1 B ASP 0.590 1 ATOM 359 O O . ASP 68 68 ? A 35.729 -38.173 68.690 1 1 B ASP 0.590 1 ATOM 360 C CB . ASP 68 68 ? A 35.797 -34.750 67.939 1 1 B ASP 0.590 1 ATOM 361 C CG . ASP 68 68 ? A 36.923 -33.927 68.538 1 1 B ASP 0.590 1 ATOM 362 O OD1 . ASP 68 68 ? A 37.971 -34.514 68.902 1 1 B ASP 0.590 1 ATOM 363 O OD2 . ASP 68 68 ? A 36.715 -32.702 68.673 1 1 B ASP 0.590 1 ATOM 364 N N . CYS 69 69 ? A 37.374 -36.924 69.606 1 1 B CYS 0.620 1 ATOM 365 C CA . CYS 69 69 ? A 37.493 -37.536 70.940 1 1 B CYS 0.620 1 ATOM 366 C C . CYS 69 69 ? A 36.458 -36.902 71.877 1 1 B CYS 0.620 1 ATOM 367 O O . CYS 69 69 ? A 36.413 -35.684 72.046 1 1 B CYS 0.620 1 ATOM 368 C CB . CYS 69 69 ? A 38.852 -37.289 71.740 1 1 B CYS 0.620 1 ATOM 369 S SG . CYS 69 69 ? A 40.451 -38.048 71.247 1 1 B CYS 0.620 1 ATOM 370 N N . SER 70 70 ? A 35.612 -37.677 72.585 1 1 B SER 0.580 1 ATOM 371 C CA . SER 70 70 ? A 34.571 -37.073 73.415 1 1 B SER 0.580 1 ATOM 372 C C . SER 70 70 ? A 34.514 -37.701 74.792 1 1 B SER 0.580 1 ATOM 373 O O . SER 70 70 ? A 34.620 -38.917 74.936 1 1 B SER 0.580 1 ATOM 374 C CB . SER 70 70 ? A 33.197 -37.141 72.715 1 1 B SER 0.580 1 ATOM 375 O OG . SER 70 70 ? A 32.224 -36.392 73.443 1 1 B SER 0.580 1 ATOM 376 N N . SER 71 71 ? A 34.404 -36.861 75.854 1 1 B SER 0.570 1 ATOM 377 C CA . SER 71 71 ? A 34.348 -37.234 77.268 1 1 B SER 0.570 1 ATOM 378 C C . SER 71 71 ? A 33.074 -37.979 77.619 1 1 B SER 0.570 1 ATOM 379 O O . SER 71 71 ? A 33.080 -38.951 78.357 1 1 B SER 0.570 1 ATOM 380 C CB . SER 71 71 ? A 34.567 -36.007 78.214 1 1 B SER 0.570 1 ATOM 381 O OG . SER 71 71 ? A 33.793 -34.864 77.871 1 1 B SER 0.570 1 ATOM 382 N N . HIS 72 72 ? A 31.943 -37.538 77.046 1 1 B HIS 0.500 1 ATOM 383 C CA . HIS 72 72 ? A 30.657 -38.176 77.233 1 1 B HIS 0.500 1 ATOM 384 C C . HIS 72 72 ? A 30.066 -38.507 75.877 1 1 B HIS 0.500 1 ATOM 385 O O . HIS 72 72 ? A 29.906 -37.631 75.031 1 1 B HIS 0.500 1 ATOM 386 C CB . HIS 72 72 ? A 29.662 -37.226 77.954 1 1 B HIS 0.500 1 ATOM 387 C CG . HIS 72 72 ? A 30.025 -36.896 79.371 1 1 B HIS 0.500 1 ATOM 388 N ND1 . HIS 72 72 ? A 31.083 -36.040 79.653 1 1 B HIS 0.500 1 ATOM 389 C CD2 . HIS 72 72 ? A 29.482 -37.358 80.520 1 1 B HIS 0.500 1 ATOM 390 C CE1 . HIS 72 72 ? A 31.158 -36.018 80.962 1 1 B HIS 0.500 1 ATOM 391 N NE2 . HIS 72 72 ? A 30.209 -36.794 81.549 1 1 B HIS 0.500 1 ATOM 392 N N . CYS 73 73 ? A 29.703 -39.779 75.611 1 1 B CYS 0.600 1 ATOM 393 C CA . CYS 73 73 ? A 29.152 -40.143 74.322 1 1 B CYS 0.600 1 ATOM 394 C C . CYS 73 73 ? A 27.894 -40.959 74.536 1 1 B CYS 0.600 1 ATOM 395 O O . CYS 73 73 ? A 27.905 -42.015 75.159 1 1 B CYS 0.600 1 ATOM 396 C CB . CYS 73 73 ? A 30.206 -40.892 73.458 1 1 B CYS 0.600 1 ATOM 397 S SG . CYS 73 73 ? A 29.789 -40.961 71.682 1 1 B CYS 0.600 1 ATOM 398 N N . LEU 74 74 ? A 26.750 -40.459 74.034 1 1 B LEU 0.530 1 ATOM 399 C CA . LEU 74 74 ? A 25.506 -41.187 74.008 1 1 B LEU 0.530 1 ATOM 400 C C . LEU 74 74 ? A 25.076 -41.259 72.563 1 1 B LEU 0.530 1 ATOM 401 O O . LEU 74 74 ? A 24.785 -40.229 71.946 1 1 B LEU 0.530 1 ATOM 402 C CB . LEU 74 74 ? A 24.418 -40.453 74.834 1 1 B LEU 0.530 1 ATOM 403 C CG . LEU 74 74 ? A 23.037 -41.150 74.874 1 1 B LEU 0.530 1 ATOM 404 C CD1 . LEU 74 74 ? A 23.103 -42.533 75.551 1 1 B LEU 0.530 1 ATOM 405 C CD2 . LEU 74 74 ? A 22.011 -40.259 75.599 1 1 B LEU 0.530 1 ATOM 406 N N . ASN 75 75 ? A 25.055 -42.489 72.006 1 1 B ASN 0.580 1 ATOM 407 C CA . ASN 75 75 ? A 24.648 -42.814 70.651 1 1 B ASN 0.580 1 ATOM 408 C C . ASN 75 75 ? A 23.176 -42.451 70.436 1 1 B ASN 0.580 1 ATOM 409 O O . ASN 75 75 ? A 22.327 -42.779 71.265 1 1 B ASN 0.580 1 ATOM 410 C CB . ASN 75 75 ? A 24.980 -44.323 70.374 1 1 B ASN 0.580 1 ATOM 411 C CG . ASN 75 75 ? A 24.715 -44.797 68.938 1 1 B ASN 0.580 1 ATOM 412 O OD1 . ASN 75 75 ? A 23.646 -44.652 68.384 1 1 B ASN 0.580 1 ATOM 413 N ND2 . ASN 75 75 ? A 25.739 -45.444 68.320 1 1 B ASN 0.580 1 ATOM 414 N N . LYS 76 76 ? A 22.837 -41.720 69.360 1 1 B LYS 0.590 1 ATOM 415 C CA . LYS 76 76 ? A 21.476 -41.262 69.186 1 1 B LYS 0.590 1 ATOM 416 C C . LYS 76 76 ? A 21.195 -40.906 67.759 1 1 B LYS 0.590 1 ATOM 417 O O . LYS 76 76 ? A 22.088 -40.510 67.034 1 1 B LYS 0.590 1 ATOM 418 C CB . LYS 76 76 ? A 21.137 -39.997 70.024 1 1 B LYS 0.590 1 ATOM 419 C CG . LYS 76 76 ? A 21.999 -38.743 69.751 1 1 B LYS 0.590 1 ATOM 420 C CD . LYS 76 76 ? A 21.675 -37.549 70.667 1 1 B LYS 0.590 1 ATOM 421 C CE . LYS 76 76 ? A 22.098 -37.809 72.119 1 1 B LYS 0.590 1 ATOM 422 N NZ . LYS 76 76 ? A 21.866 -36.605 72.947 1 1 B LYS 0.590 1 ATOM 423 N N . THR 77 77 ? A 19.914 -40.969 67.349 1 1 B THR 0.590 1 ATOM 424 C CA . THR 77 77 ? A 19.513 -40.662 65.984 1 1 B THR 0.590 1 ATOM 425 C C . THR 77 77 ? A 18.195 -39.920 66.061 1 1 B THR 0.590 1 ATOM 426 O O . THR 77 77 ? A 17.215 -40.414 66.615 1 1 B THR 0.590 1 ATOM 427 C CB . THR 77 77 ? A 19.472 -41.895 65.059 1 1 B THR 0.590 1 ATOM 428 O OG1 . THR 77 77 ? A 18.850 -41.678 63.800 1 1 B THR 0.590 1 ATOM 429 C CG2 . THR 77 77 ? A 18.756 -43.097 65.697 1 1 B THR 0.590 1 ATOM 430 N N . PHE 78 78 ? A 18.150 -38.667 65.561 1 1 B PHE 0.510 1 ATOM 431 C CA . PHE 78 78 ? A 16.992 -37.793 65.700 1 1 B PHE 0.510 1 ATOM 432 C C . PHE 78 78 ? A 16.880 -36.943 64.458 1 1 B PHE 0.510 1 ATOM 433 O O . PHE 78 78 ? A 17.886 -36.520 63.888 1 1 B PHE 0.510 1 ATOM 434 C CB . PHE 78 78 ? A 17.109 -36.775 66.873 1 1 B PHE 0.510 1 ATOM 435 C CG . PHE 78 78 ? A 16.868 -37.410 68.213 1 1 B PHE 0.510 1 ATOM 436 C CD1 . PHE 78 78 ? A 15.567 -37.465 68.741 1 1 B PHE 0.510 1 ATOM 437 C CD2 . PHE 78 78 ? A 17.932 -37.927 68.970 1 1 B PHE 0.510 1 ATOM 438 C CE1 . PHE 78 78 ? A 15.328 -38.039 69.996 1 1 B PHE 0.510 1 ATOM 439 C CE2 . PHE 78 78 ? A 17.694 -38.491 70.233 1 1 B PHE 0.510 1 ATOM 440 C CZ . PHE 78 78 ? A 16.393 -38.555 70.741 1 1 B PHE 0.510 1 ATOM 441 N N . HIS 79 79 ? A 15.649 -36.663 63.982 1 1 B HIS 0.510 1 ATOM 442 C CA . HIS 79 79 ? A 15.459 -35.922 62.747 1 1 B HIS 0.510 1 ATOM 443 C C . HIS 79 79 ? A 15.128 -34.472 63.060 1 1 B HIS 0.510 1 ATOM 444 O O . HIS 79 79 ? A 13.969 -34.072 63.139 1 1 B HIS 0.510 1 ATOM 445 C CB . HIS 79 79 ? A 14.399 -36.602 61.843 1 1 B HIS 0.510 1 ATOM 446 C CG . HIS 79 79 ? A 14.719 -38.055 61.600 1 1 B HIS 0.510 1 ATOM 447 N ND1 . HIS 79 79 ? A 13.771 -38.866 60.998 1 1 B HIS 0.510 1 ATOM 448 C CD2 . HIS 79 79 ? A 15.826 -38.782 61.886 1 1 B HIS 0.510 1 ATOM 449 C CE1 . HIS 79 79 ? A 14.327 -40.055 60.934 1 1 B HIS 0.510 1 ATOM 450 N NE2 . HIS 79 79 ? A 15.578 -40.069 61.462 1 1 B HIS 0.510 1 ATOM 451 N N . HIS 80 80 ? A 16.159 -33.631 63.269 1 1 B HIS 0.480 1 ATOM 452 C CA . HIS 80 80 ? A 16.005 -32.263 63.735 1 1 B HIS 0.480 1 ATOM 453 C C . HIS 80 80 ? A 15.707 -31.345 62.581 1 1 B HIS 0.480 1 ATOM 454 O O . HIS 80 80 ? A 16.557 -31.115 61.727 1 1 B HIS 0.480 1 ATOM 455 C CB . HIS 80 80 ? A 17.288 -31.742 64.411 1 1 B HIS 0.480 1 ATOM 456 C CG . HIS 80 80 ? A 17.485 -32.373 65.741 1 1 B HIS 0.480 1 ATOM 457 N ND1 . HIS 80 80 ? A 16.799 -31.824 66.807 1 1 B HIS 0.480 1 ATOM 458 C CD2 . HIS 80 80 ? A 18.215 -33.435 66.146 1 1 B HIS 0.480 1 ATOM 459 C CE1 . HIS 80 80 ? A 17.132 -32.556 67.839 1 1 B HIS 0.480 1 ATOM 460 N NE2 . HIS 80 80 ? A 17.990 -33.557 67.505 1 1 B HIS 0.480 1 ATOM 461 N N . TYR 81 81 ? A 14.457 -30.837 62.526 1 1 B TYR 0.360 1 ATOM 462 C CA . TYR 81 81 ? A 13.913 -29.958 61.494 1 1 B TYR 0.360 1 ATOM 463 C C . TYR 81 81 ? A 14.277 -30.317 60.057 1 1 B TYR 0.360 1 ATOM 464 O O . TYR 81 81 ? A 14.750 -29.463 59.313 1 1 B TYR 0.360 1 ATOM 465 C CB . TYR 81 81 ? A 14.172 -28.443 61.726 1 1 B TYR 0.360 1 ATOM 466 C CG . TYR 81 81 ? A 13.595 -27.988 63.030 1 1 B TYR 0.360 1 ATOM 467 C CD1 . TYR 81 81 ? A 12.212 -27.778 63.175 1 1 B TYR 0.360 1 ATOM 468 C CD2 . TYR 81 81 ? A 14.444 -27.734 64.116 1 1 B TYR 0.360 1 ATOM 469 C CE1 . TYR 81 81 ? A 11.690 -27.320 64.394 1 1 B TYR 0.360 1 ATOM 470 C CE2 . TYR 81 81 ? A 13.924 -27.277 65.334 1 1 B TYR 0.360 1 ATOM 471 C CZ . TYR 81 81 ? A 12.546 -27.071 65.470 1 1 B TYR 0.360 1 ATOM 472 O OH . TYR 81 81 ? A 12.014 -26.597 66.684 1 1 B TYR 0.360 1 ATOM 473 N N . ASN 82 82 ? A 14.047 -31.600 59.677 1 1 B ASN 0.460 1 ATOM 474 C CA . ASN 82 82 ? A 14.156 -32.190 58.342 1 1 B ASN 0.460 1 ATOM 475 C C . ASN 82 82 ? A 15.484 -32.949 58.169 1 1 B ASN 0.460 1 ATOM 476 O O . ASN 82 82 ? A 15.674 -33.671 57.198 1 1 B ASN 0.460 1 ATOM 477 C CB . ASN 82 82 ? A 13.908 -31.154 57.186 1 1 B ASN 0.460 1 ATOM 478 C CG . ASN 82 82 ? A 13.649 -31.754 55.803 1 1 B ASN 0.460 1 ATOM 479 O OD1 . ASN 82 82 ? A 12.897 -32.696 55.619 1 1 B ASN 0.460 1 ATOM 480 N ND2 . ASN 82 82 ? A 14.267 -31.113 54.774 1 1 B ASN 0.460 1 ATOM 481 N N . LEU 83 83 ? A 16.449 -32.828 59.115 1 1 B LEU 0.540 1 ATOM 482 C CA . LEU 83 83 ? A 17.796 -33.330 58.909 1 1 B LEU 0.540 1 ATOM 483 C C . LEU 83 83 ? A 18.028 -34.449 59.887 1 1 B LEU 0.540 1 ATOM 484 O O . LEU 83 83 ? A 17.868 -34.309 61.097 1 1 B LEU 0.540 1 ATOM 485 C CB . LEU 83 83 ? A 18.910 -32.242 59.057 1 1 B LEU 0.540 1 ATOM 486 C CG . LEU 83 83 ? A 18.886 -31.170 57.932 1 1 B LEU 0.540 1 ATOM 487 C CD1 . LEU 83 83 ? A 17.708 -30.179 57.986 1 1 B LEU 0.540 1 ATOM 488 C CD2 . LEU 83 83 ? A 20.201 -30.376 57.795 1 1 B LEU 0.540 1 ATOM 489 N N . THR 84 84 ? A 18.402 -35.626 59.377 1 1 B THR 0.620 1 ATOM 490 C CA . THR 84 84 ? A 18.638 -36.802 60.196 1 1 B THR 0.620 1 ATOM 491 C C . THR 84 84 ? A 20.028 -36.745 60.735 1 1 B THR 0.620 1 ATOM 492 O O . THR 84 84 ? A 20.989 -36.773 59.964 1 1 B THR 0.620 1 ATOM 493 C CB . THR 84 84 ? A 18.495 -38.080 59.400 1 1 B THR 0.620 1 ATOM 494 O OG1 . THR 84 84 ? A 17.145 -38.176 58.989 1 1 B THR 0.620 1 ATOM 495 C CG2 . THR 84 84 ? A 18.805 -39.348 60.215 1 1 B THR 0.620 1 ATOM 496 N N . LEU 85 85 ? A 20.175 -36.642 62.064 1 1 B LEU 0.670 1 ATOM 497 C CA . LEU 85 85 ? A 21.453 -36.469 62.713 1 1 B LEU 0.670 1 ATOM 498 C C . LEU 85 85 ? A 21.717 -37.709 63.557 1 1 B LEU 0.670 1 ATOM 499 O O . LEU 85 85 ? A 20.899 -38.025 64.423 1 1 B LEU 0.670 1 ATOM 500 C CB . LEU 85 85 ? A 21.438 -35.240 63.670 1 1 B LEU 0.670 1 ATOM 501 C CG . LEU 85 85 ? A 21.703 -33.849 63.040 1 1 B LEU 0.670 1 ATOM 502 C CD1 . LEU 85 85 ? A 20.619 -33.357 62.075 1 1 B LEU 0.670 1 ATOM 503 C CD2 . LEU 85 85 ? A 21.986 -32.761 64.097 1 1 B LEU 0.670 1 ATOM 504 N N . ASP 86 86 ? A 22.840 -38.430 63.332 1 1 B ASP 0.670 1 ATOM 505 C CA . ASP 86 86 ? A 23.149 -39.707 63.975 1 1 B ASP 0.670 1 ATOM 506 C C . ASP 86 86 ? A 24.543 -39.659 64.584 1 1 B ASP 0.670 1 ATOM 507 O O . ASP 86 86 ? A 25.482 -39.142 63.981 1 1 B ASP 0.670 1 ATOM 508 C CB . ASP 86 86 ? A 22.911 -40.874 62.969 1 1 B ASP 0.670 1 ATOM 509 C CG . ASP 86 86 ? A 23.124 -42.308 63.437 1 1 B ASP 0.670 1 ATOM 510 O OD1 . ASP 86 86 ? A 23.600 -42.539 64.569 1 1 B ASP 0.670 1 ATOM 511 O OD2 . ASP 86 86 ? A 22.796 -43.198 62.610 1 1 B ASP 0.670 1 ATOM 512 N N . PHE 87 87 ? A 24.655 -40.103 65.850 1 1 B PHE 0.630 1 ATOM 513 C CA . PHE 87 87 ? A 25.749 -39.870 66.769 1 1 B PHE 0.630 1 ATOM 514 C C . PHE 87 87 ? A 26.209 -41.239 67.199 1 1 B PHE 0.630 1 ATOM 515 O O . PHE 87 87 ? A 25.446 -41.982 67.799 1 1 B PHE 0.630 1 ATOM 516 C CB . PHE 87 87 ? A 25.342 -39.146 68.108 1 1 B PHE 0.630 1 ATOM 517 C CG . PHE 87 87 ? A 24.830 -37.703 68.041 1 1 B PHE 0.630 1 ATOM 518 C CD1 . PHE 87 87 ? A 24.054 -37.189 66.984 1 1 B PHE 0.630 1 ATOM 519 C CD2 . PHE 87 87 ? A 25.055 -36.843 69.141 1 1 B PHE 0.630 1 ATOM 520 C CE1 . PHE 87 87 ? A 23.624 -35.860 66.969 1 1 B PHE 0.630 1 ATOM 521 C CE2 . PHE 87 87 ? A 24.584 -35.518 69.151 1 1 B PHE 0.630 1 ATOM 522 C CZ . PHE 87 87 ? A 23.880 -35.023 68.050 1 1 B PHE 0.630 1 ATOM 523 N N . THR 88 88 ? A 27.452 -41.635 66.913 1 1 B THR 0.700 1 ATOM 524 C CA . THR 88 88 ? A 27.899 -43.008 67.096 1 1 B THR 0.700 1 ATOM 525 C C . THR 88 88 ? A 29.151 -42.994 67.917 1 1 B THR 0.700 1 ATOM 526 O O . THR 88 88 ? A 29.978 -42.097 67.784 1 1 B THR 0.700 1 ATOM 527 C CB . THR 88 88 ? A 28.128 -43.791 65.801 1 1 B THR 0.700 1 ATOM 528 O OG1 . THR 88 88 ? A 28.840 -43.012 64.874 1 1 B THR 0.700 1 ATOM 529 C CG2 . THR 88 88 ? A 26.802 -44.119 65.106 1 1 B THR 0.700 1 ATOM 530 N N . CYS 89 89 ? A 29.299 -43.975 68.830 1 1 B CYS 0.670 1 ATOM 531 C CA . CYS 89 89 ? A 30.375 -44.032 69.801 1 1 B CYS 0.670 1 ATOM 532 C C . CYS 89 89 ? A 31.115 -45.339 69.595 1 1 B CYS 0.670 1 ATOM 533 O O . CYS 89 89 ? A 30.482 -46.352 69.273 1 1 B CYS 0.670 1 ATOM 534 C CB . CYS 89 89 ? A 29.854 -43.942 71.265 1 1 B CYS 0.670 1 ATOM 535 S SG . CYS 89 89 ? A 28.634 -42.615 71.515 1 1 B CYS 0.670 1 ATOM 536 N N . CYS 90 90 ? A 32.456 -45.344 69.702 1 1 B CYS 0.650 1 ATOM 537 C CA . CYS 90 90 ? A 33.227 -46.578 69.645 1 1 B CYS 0.650 1 ATOM 538 C C . CYS 90 90 ? A 34.555 -46.488 70.405 1 1 B CYS 0.650 1 ATOM 539 O O . CYS 90 90 ? A 35.261 -45.474 70.350 1 1 B CYS 0.650 1 ATOM 540 C CB . CYS 90 90 ? A 33.493 -47.032 68.177 1 1 B CYS 0.650 1 ATOM 541 S SG . CYS 90 90 ? A 34.435 -45.798 67.231 1 1 B CYS 0.650 1 ATOM 542 N N . HIS 91 91 ? A 34.964 -47.564 71.113 1 1 B HIS 0.590 1 ATOM 543 C CA . HIS 91 91 ? A 36.234 -47.617 71.824 1 1 B HIS 0.590 1 ATOM 544 C C . HIS 91 91 ? A 37.025 -48.891 71.569 1 1 B HIS 0.590 1 ATOM 545 O O . HIS 91 91 ? A 38.105 -49.064 72.128 1 1 B HIS 0.590 1 ATOM 546 C CB . HIS 91 91 ? A 35.999 -47.571 73.360 1 1 B HIS 0.590 1 ATOM 547 C CG . HIS 91 91 ? A 35.226 -48.739 73.894 1 1 B HIS 0.590 1 ATOM 548 N ND1 . HIS 91 91 ? A 33.851 -48.704 73.805 1 1 B HIS 0.590 1 ATOM 549 C CD2 . HIS 91 91 ? A 35.627 -49.902 74.456 1 1 B HIS 0.590 1 ATOM 550 C CE1 . HIS 91 91 ? A 33.442 -49.834 74.315 1 1 B HIS 0.590 1 ATOM 551 N NE2 . HIS 91 91 ? A 34.475 -50.614 74.732 1 1 B HIS 0.590 1 ATOM 552 N N . ASP 92 92 ? A 36.521 -49.816 70.723 1 1 B ASP 0.440 1 ATOM 553 C CA . ASP 92 92 ? A 37.076 -51.147 70.522 1 1 B ASP 0.440 1 ATOM 554 C C . ASP 92 92 ? A 38.457 -51.149 69.894 1 1 B ASP 0.440 1 ATOM 555 O O . ASP 92 92 ? A 39.288 -52.020 70.133 1 1 B ASP 0.440 1 ATOM 556 C CB . ASP 92 92 ? A 36.109 -51.984 69.642 1 1 B ASP 0.440 1 ATOM 557 C CG . ASP 92 92 ? A 34.844 -52.317 70.412 1 1 B ASP 0.440 1 ATOM 558 O OD1 . ASP 92 92 ? A 34.854 -52.226 71.665 1 1 B ASP 0.440 1 ATOM 559 O OD2 . ASP 92 92 ? A 33.848 -52.670 69.733 1 1 B ASP 0.440 1 ATOM 560 N N . GLN 93 93 ? A 38.745 -50.140 69.061 1 1 B GLN 0.460 1 ATOM 561 C CA . GLN 93 93 ? A 40.025 -50.045 68.435 1 1 B GLN 0.460 1 ATOM 562 C C . GLN 93 93 ? A 40.256 -48.573 68.160 1 1 B GLN 0.460 1 ATOM 563 O O . GLN 93 93 ? A 39.309 -47.806 67.990 1 1 B GLN 0.460 1 ATOM 564 C CB . GLN 93 93 ? A 40.052 -50.931 67.154 1 1 B GLN 0.460 1 ATOM 565 C CG . GLN 93 93 ? A 41.416 -51.007 66.433 1 1 B GLN 0.460 1 ATOM 566 C CD . GLN 93 93 ? A 41.370 -52.046 65.307 1 1 B GLN 0.460 1 ATOM 567 O OE1 . GLN 93 93 ? A 40.338 -52.455 64.809 1 1 B GLN 0.460 1 ATOM 568 N NE2 . GLN 93 93 ? A 42.580 -52.503 64.891 1 1 B GLN 0.460 1 ATOM 569 N N . SER 94 94 ? A 41.539 -48.139 68.136 1 1 B SER 0.620 1 ATOM 570 C CA . SER 94 94 ? A 42.010 -46.863 67.588 1 1 B SER 0.620 1 ATOM 571 C C . SER 94 94 ? A 41.523 -46.680 66.160 1 1 B SER 0.620 1 ATOM 572 O O . SER 94 94 ? A 41.639 -47.616 65.367 1 1 B SER 0.620 1 ATOM 573 C CB . SER 94 94 ? A 43.577 -46.834 67.560 1 1 B SER 0.620 1 ATOM 574 O OG . SER 94 94 ? A 44.131 -45.570 67.213 1 1 B SER 0.620 1 ATOM 575 N N . LEU 95 95 ? A 40.971 -45.493 65.822 1 1 B LEU 0.630 1 ATOM 576 C CA . LEU 95 95 ? A 40.441 -45.163 64.507 1 1 B LEU 0.630 1 ATOM 577 C C . LEU 95 95 ? A 39.198 -45.957 64.118 1 1 B LEU 0.630 1 ATOM 578 O O . LEU 95 95 ? A 39.079 -46.490 63.030 1 1 B LEU 0.630 1 ATOM 579 C CB . LEU 95 95 ? A 41.541 -45.199 63.414 1 1 B LEU 0.630 1 ATOM 580 C CG . LEU 95 95 ? A 42.799 -44.380 63.784 1 1 B LEU 0.630 1 ATOM 581 C CD1 . LEU 95 95 ? A 43.908 -44.693 62.769 1 1 B LEU 0.630 1 ATOM 582 C CD2 . LEU 95 95 ? A 42.501 -42.871 63.850 1 1 B LEU 0.630 1 ATOM 583 N N . CYS 96 96 ? A 38.201 -46.060 65.021 1 1 B CYS 0.670 1 ATOM 584 C CA . CYS 96 96 ? A 36.970 -46.759 64.695 1 1 B CYS 0.670 1 ATOM 585 C C . CYS 96 96 ? A 35.867 -45.804 64.298 1 1 B CYS 0.670 1 ATOM 586 O O . CYS 96 96 ? A 34.810 -46.209 63.828 1 1 B CYS 0.670 1 ATOM 587 C CB . CYS 96 96 ? A 36.498 -47.519 65.958 1 1 B CYS 0.670 1 ATOM 588 S SG . CYS 96 96 ? A 36.352 -46.438 67.415 1 1 B CYS 0.670 1 ATOM 589 N N . ASN 97 97 ? A 36.087 -44.494 64.526 1 1 B ASN 0.650 1 ATOM 590 C CA . ASN 97 97 ? A 35.142 -43.464 64.198 1 1 B ASN 0.650 1 ATOM 591 C C . ASN 97 97 ? A 35.256 -43.084 62.744 1 1 B ASN 0.650 1 ATOM 592 O O . ASN 97 97 ? A 35.866 -42.068 62.424 1 1 B ASN 0.650 1 ATOM 593 C CB . ASN 97 97 ? A 35.281 -42.232 65.141 1 1 B ASN 0.650 1 ATOM 594 C CG . ASN 97 97 ? A 36.680 -41.610 65.277 1 1 B ASN 0.650 1 ATOM 595 O OD1 . ASN 97 97 ? A 37.742 -42.205 65.252 1 1 B ASN 0.650 1 ATOM 596 N ND2 . ASN 97 97 ? A 36.607 -40.278 65.570 1 1 B ASN 0.650 1 ATOM 597 N N . GLU 98 98 ? A 34.657 -43.910 61.875 1 1 B GLU 0.590 1 ATOM 598 C CA . GLU 98 98 ? A 34.612 -43.788 60.445 1 1 B GLU 0.590 1 ATOM 599 C C . GLU 98 98 ? A 33.147 -44.011 59.976 1 1 B GLU 0.590 1 ATOM 600 O O . GLU 98 98 ? A 32.261 -44.279 60.839 1 1 B GLU 0.590 1 ATOM 601 C CB . GLU 98 98 ? A 35.542 -44.868 59.818 1 1 B GLU 0.590 1 ATOM 602 C CG . GLU 98 98 ? A 37.035 -44.701 60.218 1 1 B GLU 0.590 1 ATOM 603 C CD . GLU 98 98 ? A 38.006 -45.701 59.592 1 1 B GLU 0.590 1 ATOM 604 O OE1 . GLU 98 98 ? A 39.228 -45.495 59.818 1 1 B GLU 0.590 1 ATOM 605 O OE2 . GLU 98 98 ? A 37.569 -46.643 58.881 1 1 B GLU 0.590 1 ATOM 606 O OXT . GLU 98 98 ? A 32.894 -43.905 58.745 1 1 B GLU 0.590 1 # # loop_ _atom_type.symbol C N O S # # 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 0.545 2 1 3 0.468 # # 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 20 GLN 1 0.350 2 1 A 21 ALA 1 0.580 3 1 A 22 LEU 1 0.560 4 1 A 23 ARG 1 0.570 5 1 A 24 CYS 1 0.630 6 1 A 25 LEU 1 0.570 7 1 A 26 GLU 1 0.580 8 1 A 27 CYS 1 0.580 9 1 A 28 ASP 1 0.570 10 1 A 29 MET 1 0.530 11 1 A 30 LEU 1 0.550 12 1 A 31 ASN 1 0.520 13 1 A 32 SER 1 0.520 14 1 A 33 ASP 1 0.450 15 1 A 34 GLY 1 0.520 16 1 A 35 ILE 1 0.490 17 1 A 36 CYS 1 0.460 18 1 A 37 GLU 1 0.500 19 1 A 38 LYS 1 0.350 20 1 A 39 GLY 1 0.490 21 1 A 40 ASN 1 0.530 22 1 A 41 SER 1 0.570 23 1 A 42 THR 1 0.560 24 1 A 43 CYS 1 0.560 25 1 A 44 GLU 1 0.350 26 1 A 45 ALA 1 0.310 27 1 A 46 LYS 1 0.390 28 1 A 47 GLU 1 0.340 29 1 A 48 ASP 1 0.520 30 1 A 49 GLN 1 0.540 31 1 A 50 GLU 1 0.580 32 1 A 51 CYS 1 0.640 33 1 A 52 GLY 1 0.690 34 1 A 53 ILE 1 0.650 35 1 A 54 LEU 1 0.630 36 1 A 55 VAL 1 0.640 37 1 A 56 VAL 1 0.660 38 1 A 57 SER 1 0.540 39 1 A 58 GLN 1 0.390 40 1 A 59 GLY 1 0.450 41 1 A 60 VAL 1 0.390 42 1 A 61 ASP 1 0.510 43 1 A 62 ILE 1 0.550 44 1 A 63 LEU 1 0.570 45 1 A 64 PHE 1 0.550 46 1 A 65 GLY 1 0.590 47 1 A 66 MET 1 0.560 48 1 A 67 GLN 1 0.580 49 1 A 68 ASP 1 0.590 50 1 A 69 CYS 1 0.620 51 1 A 70 SER 1 0.580 52 1 A 71 SER 1 0.570 53 1 A 72 HIS 1 0.500 54 1 A 73 CYS 1 0.600 55 1 A 74 LEU 1 0.530 56 1 A 75 ASN 1 0.580 57 1 A 76 LYS 1 0.590 58 1 A 77 THR 1 0.590 59 1 A 78 PHE 1 0.510 60 1 A 79 HIS 1 0.510 61 1 A 80 HIS 1 0.480 62 1 A 81 TYR 1 0.360 63 1 A 82 ASN 1 0.460 64 1 A 83 LEU 1 0.540 65 1 A 84 THR 1 0.620 66 1 A 85 LEU 1 0.670 67 1 A 86 ASP 1 0.670 68 1 A 87 PHE 1 0.630 69 1 A 88 THR 1 0.700 70 1 A 89 CYS 1 0.670 71 1 A 90 CYS 1 0.650 72 1 A 91 HIS 1 0.590 73 1 A 92 ASP 1 0.440 74 1 A 93 GLN 1 0.460 75 1 A 94 SER 1 0.620 76 1 A 95 LEU 1 0.630 77 1 A 96 CYS 1 0.670 78 1 A 97 ASN 1 0.650 79 1 A 98 GLU 1 0.590 # # 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. 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