A0A5K6CTU2 (A0A5K6CTU2_ACIB3) Acinetobacter baumannii (strain AB307-0294)

Large ribosomal subunit protein bL25 UniProtKBInterProInteractive Modelling

98 aa; Sequence (Fasta) ; 4 identical sequences: Acinetobacter baumannii: B7GYQ9, B7I7B6, A0A0D5YKE4; Acinetobacter baumannii MRSN 3527: A0A0J1A141

Available Structures

16 Experimental Structures

DescriptionPDB IDOligo-stateRangeSeq id (%)Ligands
A. baumannii Ribosome-Eravacycline complex: 50S Heteromer
A0A7U3Y9I4; A0A7U4DFF9; B7I4T0; B7I693; B7I694; B7I6V8; B7I6V9; B7I7A4; B7I7B6; B7I9B0; B7IA13; B7IA18; B7IA20; B7IA21; B7IA23; B7IA24; B7IA27; B7IA28; B7IA29; B7IA31; B7IA32; B7IA36; B7IA37; B7IA38; B7IA39; B7IAS9; B7IBC3; B7IBH8;
2-98
100ZN;YQM; 159×MG;
Cryo-EM structure of the Acinetobacter baumannii Ribosome: 70S with P-site tRNA Heteromer
A0A009QSN8; A0A062C259; A0A062C3F9; A0A150HZL5; A0A1V3DIZ9; A0A1Y3CHB1; B7I3U0; B7I5N9; B7I693; B7I6V8; B7I6V9; B7I7A4; B7I7B6; B7I7R9; B7I7S0; B7I9B0; B7IA13; B7IA15; B7IA17; B7IA20; B7IA22; B7IA23; B7IA24; B7IA25; B7IA26; B7IA27; B7IA28; B7IA30; B7IA31; B7IA32; B7IA35; B7IA36; B7IA37; B7IA38; B7IA39; B7IAS9; B7IBC1; B7IBC3; N8V730; N9DYI8; N9NZ44; S3NQR5; V5V9N0; V5VBA5; V5VBC2; V5VGC9;
2-98
100ZN;FME; 114×MG;NA;
Cryo-EM structure of the Acinetobacter baumannii Ribosome: 70S with E-site tRNA Heteromer
A0A009QSN8; A0A062C259; A0A062C3F9; A0A150HZL5; A0A1V3DIZ9; A0A1Y3CHB1; B7I3U0; B7I5N9; B7I693; B7I6V8; B7I6V9; B7I7A4; B7I7B6; B7I7R9; B7I7S0; B7I9B0; B7IA13; B7IA15; B7IA17; B7IA20; B7IA22; B7IA23; B7IA24; B7IA25; B7IA26; B7IA27; B7IA28; B7IA30; B7IA31; B7IA32; B7IA35; B7IA36; B7IA37; B7IA38; B7IA39; B7IAS9; B7IBC1; B7IBC3; N8V730; N9DYI8; N9NZ44; S3NQR5; V5V9N0; V5VBA5; V5VBC2; V5VGC9;
2-98
100ZN; 93×MG;NA;
Cryo-EM structure of the Acinetobacter baumannii Ribosome: 70S in Empty state Heteromer
A0A009QSN8; A0A062C259; A0A062C3F9; A0A150HZL5; A0A1V3DIZ9; A0A1Y3CHB1; B7I3U0; B7I5N9; B7I693; B7I6V8; B7I6V9; B7I7A4; B7I7B6; B7I7R9; B7I7S0; B7I9B0; B7IA13; B7IA15; B7IA17; B7IA20; B7IA22; B7IA23; B7IA24; B7IA25; B7IA26; B7IA27; B7IA28; B7IA30; B7IA31; B7IA32; B7IA35; B7IA36; B7IA37; B7IA38; B7IA39; B7IAS9; B7IBC1; B7IBC3; N8V730; N9DYI8; N9NZ44; S3NQR5; V5V9N0; V5VBA5; V5VBC2; V5VGC9;
2-98
100ZN; 93×MG;NA;
Cryo-EM structure of the Acinetobacter baumannii Ribosome: 50S subunit Heteromer
A0A009QSN8; A0A1Y3CHB1; B7I693; B7I6V8; B7I6V9; B7I7A4; B7I7B6; B7I9B0; B7IA13; B7IA20; B7IA23; B7IA24; B7IA27; B7IA28; B7IA31; B7IA32; B7IA36; B7IA37; B7IA38; B7IA39; B7IAS9; B7IBC3; N8V730; N9DYI8; N9NZ44; S3NQR5; V5VGC9;
2-98
100ZN; 106×MG;NA;
A. baumannii Ribosome-TP-6076 complex: P-site tRNA 70S Heteromer
A0A009I821; A0A1V3DIZ9; A0A4R0F9S8; A0A7U4DFF9; B7I3U0; B7I5N9; B7I693; B7I6V8; B7I6V9; B7I7A4; B7I7B6; B7I7R9; B7I7S0; B7I9B0; B7IA13; B7IA15; B7IA17; B7IA18; B7IA20; B7IA22; B7IA23; B7IA24; B7IA25; B7IA26; B7IA27; B7IA28; B7IA30; B7IA31; B7IA32; B7IA35; B7IA36; B7IA37; B7IA38; B7IA39; B7IAS9; B7IBC1; B7IBC3; N8SHC6; V5V9N0; V5VBA5; V5VBC2; V5VGC9;
2-98
100ZN;80P;MG;
A. baumannii 70S ribosome-Streptothricin-D complex Heteromer
A0A009I821; A0A1V3DIZ9; A0A372MP10; A0A4R0F9S8; A0A7U4DFF9; B7I3U0; B7I5N9; B7I693; B7I6V8; B7I6V9; B7I7A4; B7I7B6; B7I7R9; B7I7S0; B7I9B0; B7IA13; B7IA15; B7IA17; B7IA18; B7IA20; B7IA21; B7IA22; B7IA23; B7IA24; B7IA25; B7IA26; B7IA27; B7IA28; B7IA30; B7IA31; B7IA32; B7IA35; B7IA36; B7IA37; B7IA38; B7IA39; B7IAS9; B7IBC1; B7IBC3; N8SHC6; V5V9N0; V5VBA5; V5VBC2; V5VGC9;
2-98
100ZN; 12×OIY;MG;
A. baumannii Ribosome-TP-6076 complex: E-site tRNA 70S Heteromer
A0A009I821; A0A1V3DIZ9; A0A4R0F9S8; A0A7U4DFF9; B7I3U0; B7I5N9; B7I693; B7I6V8; B7I6V9; B7I7A4; B7I7B6; B7I7R9; B7I7S0; B7I9B0; B7IA13; B7IA15; B7IA17; B7IA18; B7IA20; B7IA22; B7IA23; B7IA24; B7IA25; B7IA26; B7IA27; B7IA28; B7IA30; B7IA31; B7IA32; B7IA35; B7IA36; B7IA37; B7IA38; B7IA39; B7IAS9; B7IBC1; B7IBC3; N8SHC6; V5V9N0; V5VBA5; V5VBC2; V5VGC9;
2-98
100ZN;80P;MG;
A. baumannii ribosome: 70S with E-site tRNA Heteromer
A0A009I821; A0A1V3DIZ9; A0A4R0F9S8; A0A7U4DFF9; B7I3U0; B7I5N9; B7I693; B7I6V8; B7I6V9; B7I7A4; B7I7B6; B7I7R9; B7I7S0; B7I9B0; B7IA13; B7IA15; B7IA17; B7IA18; B7IA20; B7IA21; B7IA22; B7IA23; B7IA24; B7IA25; B7IA26; B7IA27; B7IA28; B7IA30; B7IA31; B7IA32; B7IA35; B7IA36; B7IA37; B7IA38; B7IA39; B7IAS9; B7IBC1; B7IBC3; N8SHC6; V5V9N0; V5VBA5; V5VBC2; V5VGC9;
2-98
100ZN;
A. baumannii ribosome-Streptothricin-F complex: 70S with P-site tRNA Heteromer
A0A009I821; A0A1V3DIZ9; A0A4R0F9S8; A0A7U4DFF9; B7I3U0; B7I5N9; B7I693; B7I6V8; B7I6V9; B7I7A4; B7I7B6; B7I7R9; B7I7S0; B7I9B0; B7IA13; B7IA15; B7IA17; B7IA18; B7IA20; B7IA21; B7IA22; B7IA23; B7IA24; B7IA25; B7IA26; B7IA27; B7IA28; B7IA30; B7IA31; B7IA32; B7IA35; B7IA36; B7IA37; B7IA38; B7IA39; B7IAS9; B7IBC1; B7IBC3; N8SHC6; V5V9N0; V5VBA5; V5VBC2; V5VGC9;
2-98
100ZN;OI9;
A. baumannii 70S ribosome-Streptothricin-F complex Heteromer
A0A009I821; A0A1V3DIZ9; A0A372MP10; A0A4R0F9S8; A0A7U4DFF9; B7I3U0; B7I5N9; B7I693; B7I6V8; B7I6V9; B7I7A4; B7I7B6; B7I7R9; B7I7S0; B7I9B0; B7IA13; B7IA15; B7IA17; B7IA18; B7IA20; B7IA21; B7IA22; B7IA23; B7IA24; B7IA25; B7IA26; B7IA27; B7IA28; B7IA30; B7IA31; B7IA32; B7IA35; B7IA36; B7IA37; B7IA38; B7IA39; B7IAS9; B7IBC1; B7IBC3; N8SHC6; V5V9N0; V5VBA5; V5VBC2; V5VGC9;
2-98
100ZN;OI9;
A. baumannii ribosome-Streptothricin-D complex: 70S with P-site tRNA Heteromer
A0A009I821; A0A1V3DIZ9; A0A372MP10; A0A4R0F9S8; A0A7U4DFF9; B7I3U0; B7I5N9; B7I693; B7I6V8; B7I6V9; B7I7A4; B7I7B6; B7I7R9; B7I7S0; B7I9B0; B7IA13; B7IA15; B7IA17; B7IA18; B7IA20; B7IA21; B7IA22; B7IA23; B7IA24; B7IA25; B7IA26; B7IA27; B7IA28; B7IA30; B7IA31; B7IA32; B7IA35; B7IA36; B7IA37; B7IA38; B7IA39; B7IAS9; B7IBC1; B7IBC3; N8SHC6; V5V9N0; V5VBA5; V5VBC2; V5VGC9;
2-98
100ZN; 12×OIY;MG;
A. baumannii Ribosome-TP-6076 complex: Empty 70S Heteromer
A0A009I821; A0A1V3DIZ9; A0A4R0F9S8; A0A7U4DFF9; B7I3U0; B7I5N9; B7I693; B7I6V8; B7I6V9; B7I7A4; B7I7B6; B7I7R9; B7I7S0; B7I9B0; B7IA13; B7IA15; B7IA17; B7IA18; B7IA20; B7IA22; B7IA23; B7IA24; B7IA25; B7IA26; B7IA27; B7IA28; B7IA30; B7IA31; B7IA32; B7IA35; B7IA36; B7IA37; B7IA38; B7IA39; B7IAS9; B7IBC1; B7IBC3; N8SHC6; V5V9N0; V5VBA5; V5VBC2; V5VGC9;
2-98
100ZN;80P;MG;
A. baumannii ribosome-Streptothricin-D complex: 70S with E-site tRNA Heteromer
A0A009I821; A0A1V3DIZ9; A0A372MP10; A0A4R0F9S8; A0A7U4DFF9; B7I3U0; B7I5N9; B7I693; B7I6V8; B7I6V9; B7I7A4; B7I7B6; B7I7R9; B7I7S0; B7I9B0; B7IA13; B7IA15; B7IA17; B7IA18; B7IA20; B7IA21; B7IA22; B7IA23; B7IA24; B7IA25; B7IA26; B7IA27; B7IA28; B7IA30; B7IA31; B7IA32; B7IA35; B7IA36; B7IA37; B7IA38; B7IA39; B7IAS9; B7IBC1; B7IBC3; N8SHC6; V5V9N0; V5VBA5; V5VBC2; V5VGC9;
2-98
100ZN; 11×OIY;MG;
A. baumannii Ribosome-Eravacycline complex: hpf-bound 70S Heteromer
A0A009I821; A0A1V3DIZ9; A0A4R0F9S8; B7I3U0; B7I5N9; B7I693; B7I6V8; B7I6V9; B7I7A4; B7I7B6; B7I7R9; B7I7S0; B7I9B0; B7IA13; B7IA15; B7IA17; B7IA20; B7IA22; B7IA23; B7IA24; B7IA25; B7IA26; B7IA27; B7IA28; B7IA30; B7IA31; B7IA32; B7IA35; B7IA36; B7IA37; B7IA38; B7IA39; B7IAS9; B7IBC1; B7IBC3; N8SHC6; V5V8V8; V5V9N0; V5VBA5; V5VBC2; V5VGC9;
2-98
100ZN;YQM; 187×MG;
A. baumannii Ribosome-Eravacycline complex: E-site tRNA 70S Heteromer
A0A009I821; A0A1V3DIZ9; A0A4R0F9S8; B7I3U0; B7I5N9; B7I693; B7I6V8; B7I6V9; B7I7A4; B7I7B6; B7I7R9; B7I7S0; B7I9B0; B7IA13; B7IA15; B7IA17; B7IA20; B7IA22; B7IA23; B7IA24; B7IA25; B7IA26; B7IA27; B7IA28; B7IA30; B7IA31; B7IA32; B7IA35; B7IA36; B7IA37; B7IA38; B7IA39; B7IAS9; B7IBC1; B7IBC3; N8SHC6; V5V9N0; V5VBA5; V5VBC2; V5VGC9;
2-98
100ZN;YQM; 196×MG;

2 SWISS-MODEL models

TemplateOligo-stateQMEANDisCoRangeLigandsTrg-Tpl Seq id (%)
7m4v.1.Ymonomer0.862-98
100.00
5izn.1.Amonomer0.604-98
40.22