A0R215 (RL31_MYCS2) Mycolicibacterium smegmatis (strain ATCC 700084 / mc(2)155) (Mycobacteriumsmegmatis)

Large ribosomal subunit protein bL31 UniProtKBInterProSTRINGInteractive Modelling

75 aa; Sequence (Fasta) ; 1 identical sequence: Mycolicibacterium smegmatis: A0A2U9PVG7

Available Structures

29 Experimental Structures

DescriptionPDB IDOligo-stateRangeSeq id (%)Ligands
Cryo-EM structure of the Mycobacterium smegmatis 70S ribosome in complex with hibernation factor Ms… Heteromer
A0QR10; A0QRI6; A0QS39; A0QS45; A0QS46; A0QS62; A0QS96; A0QS97; A0QSD0; A0QSD1; A0QSD2; A0QSD3; A0QSD4; A0QSD5; A0QSD6; A0QSD7; A0QSD8; A0QSD9; A0QSE0; A0QSF9; A0QSG0; A0QSG1; A0QSG2; A0QSG3; A0QSG4; A0QSG5; A0QSG6; A0QSG7; A0QSG8; A0QSL4; A0QSL5; A0QSL6; A0QSL7; A0QSL9; A0QSP8; A0QSP9; A0QTP4; A0QV03; A0QV37; A0QV42; A0QVB8; A0QVQ3; A0QYU6; A0QYU7; A0R102; A0R150; A0R151; A0R3D2; A0R3I9; A0R7F6; A0R7F7; A0R7F9; A0R7K0;
1-66
100.0ZN;
Cryo-EM structure of the Mycobacterium smegmatis 70S ribosome in complex with hibernation factor Rv… Heteromer
A0QR10; A0QS39; A0QS45; A0QS46; A0QS62; A0QS96; A0QS97; A0QSD0; A0QSD1; A0QSD2; A0QSD3; A0QSD4; A0QSD5; A0QSD6; A0QSD7; A0QSD8; A0QSD9; A0QSE0; A0QSF9; A0QSG0; A0QSG1; A0QSG2; A0QSG3; A0QSG4; A0QSG5; A0QSG6; A0QSG7; A0QSG8; A0QSL4; A0QSL5; A0QSL6; A0QSL7; A0QSL9; A0QSP8; A0QSP9; A0QTP4; A0QV03; A0QV37; A0QV42; A0QVB8; A0QVQ3; A0QYU6; A0QYU7; A0R102; A0R150; A0R151; A0R3D2; A0R3I9; A0R7F6; A0R7F7; A0R7F9; A0R7K0; P9WL63;
1-66
100.0ZN;
Cryo-EM structure of the Mycobacterium smegmatis 70S ribosome in complex with hibernation factor Ms… Heteromer
A0QR10; A0QRI6; A0QS39; A0QS45; A0QS62; A0QS96; A0QS97; A0QS98; A0QSD0; A0QSD1; A0QSD2; A0QSD3; A0QSD4; A0QSD5; A0QSD6; A0QSD7; A0QSD8; A0QSD9; A0QSE0; A0QSF9; A0QSG0; A0QSG1; A0QSG2; A0QSG3; A0QSG4; A0QSG5; A0QSG6; A0QSG7; A0QSG8; A0QSL4; A0QSL5; A0QSL6; A0QSL7; A0QSL9; A0QSP8; A0QSP9; A0QTP4; A0QV03; A0QV37; A0QV42; A0QVB8; A0QVQ3; A0QYU6; A0QYU7; A0R102; A0R150; A0R151; A0R3D2; A0R3I9; A0R7F6; A0R7F7; A0R7F9; A0R7K0;
1-66
100.0GDP;ZN;
Cryo- EM structure of Mycobacterium smegmatis 70S ribosome and RafH. Heteromer
A0QR10; A0QS39; A0QS96; A0QS97; A0QSD0; A0QSD1; A0QSD2; A0QSD3; A0QSD4; A0QSD5; A0QSD6; A0QSD7; A0QSD9; A0QSE0; A0QSF9; A0QSG0; A0QSG1; A0QSG3; A0QSG4; A0QSG5; A0QSG6; A0QSG7; A0QSG8; A0QSL5; A0QSL6; A0QSL7; A0QSL9; A0QSP8; A0QSP9; A0QV03; A0QV37; A0QV42; A0QVB8; A0QVQ3; A0QYU6; A0QYU7; A0QZ86; A0R102; A0R150; A0R151; A0R3I9; A0R550; A0R7F6; A0R7F7; A0R7F9; A0R7K0;
1-66
100.0
Cryo- EM structure of Mycobacterium smegmatis 70S ribosome, bS1 and RafH. Heteromer
A0QR10; A0QS39; A0QS96; A0QS97; A0QSD0; A0QSD1; A0QSD2; A0QSD3; A0QSD4; A0QSD5; A0QSD6; A0QSD7; A0QSD9; A0QSE0; A0QSF9; A0QSG0; A0QSG1; A0QSG3; A0QSG4; A0QSG5; A0QSG6; A0QSG7; A0QSG8; A0QSL5; A0QSL6; A0QSL7; A0QSL9; A0QSP8; A0QSP9; A0QV03; A0QV37; A0QV42; A0QVB8; A0QVQ3; A0QYU6; A0QYU7; A0QYY6; A0QZ86; A0R102; A0R150; A0R151; A0R3I9; A0R550; A0R7F6; A0R7F7; A0R7F9; A0R7K0;
1-66
100.0
The complete structure of the Mycobacterium smegmatis 70S ribosome Heteromer
A0QR10; A0QS39; A0QS45; A0QS62; A0QS96; A0QS97; A0QSD0; A0QSD1; A0QSD2; A0QSD3; A0QSD4; A0QSD5; A0QSD6; A0QSD7; A0QSD8; A0QSD9; A0QSE0; A0QSF9; A0QSG0; A0QSG1; A0QSG2; A0QSG3; A0QSG4; A0QSG5; A0QSG6; A0QSG7; A0QSG8; A0QSL4; A0QSL5; A0QSL6; A0QSL7; A0QSL9; A0QSP8; A0QSP9; A0QTP4; A0QV03; A0QV37; A0QV42; A0QVB8; A0QVQ3; A0QYU6; A0QYU7; A0R102; A0R150; A0R151; A0R3D2; A0R3I9; A0R7F6; A0R7F7; A0R7K0;
1-66
100.0625×MG;ZN;PHE;
Cryo- EM structure of Mycobacterium smegmatis 70S ribosome, E- tRNA and RafH. Heteromer
A0QR10; A0QS39; A0QS96; A0QS97; A0QSD0; A0QSD1; A0QSD2; A0QSD3; A0QSD4; A0QSD5; A0QSD6; A0QSD7; A0QSD9; A0QSE0; A0QSF9; A0QSG0; A0QSG1; A0QSG3; A0QSG4; A0QSG5; A0QSG6; A0QSG7; A0QSG8; A0QSL5; A0QSL6; A0QSL7; A0QSL9; A0QSP8; A0QSP9; A0QV03; A0QV37; A0QV42; A0QVQ3; A0QYU6; A0QYU7; A0QZ86; A0R102; A0R150; A0R151; A0R3I9; A0R550; A0R7F6; A0R7F7; A0R7F9; A0R7K0;
1-66
100.0
M. smegmatis P/P state 50S ribosomal subunit Heteromer
A0QS39; A0QS45; A0QS62; A0QSD1; A0QSD2; A0QSD3; A0QSD4; A0QSD6; A0QSD8; A0QSD9; A0QSF9; A0QSG0; A0QSG1; A0QSG4; A0QSG5; A0QSG7; A0QSG8; A0QSL4; A0QSL9; A0QSP8; A0QTP4; A0QV03; A0QV42; A0QYU6; A0QYU7; A0R150; A0R151; A0R3D2; A0R3I9; A0R7F6; A0R7K0;
1-66
100
M. smegmatis hibernating state 70S ribosome structure Heteromer
A0QR10; A0QS39; A0QS45; A0QS62; A0QS96; A0QS97; A0QSD0; A0QSD1; A0QSD2; A0QSD3; A0QSD4; A0QSD5; A0QSD6; A0QSD7; A0QSD8; A0QSD9; A0QSE0; A0QSF9; A0QSG0; A0QSG1; A0QSG2; A0QSG3; A0QSG4; A0QSG5; A0QSG6; A0QSG7; A0QSG8; A0QSL4; A0QSL5; A0QSL6; A0QSL7; A0QSL9; A0QSP8; A0QSP9; A0QTK6; A0QTP4; A0QV03; A0QV37; A0QV42; A0QVB8; A0QVQ3; A0QYU6; A0QYU7; A0R102; A0R150; A0R151; A0R3D2; A0R3I9; A0R7F6; A0R7F7; A0R7K0;
1-66
100
M. Smegmatis P/P state 70S ribosome structure Heteromer
A0QR10; A0QS39; A0QS45; A0QS62; A0QS96; A0QS97; A0QSD0; A0QSD1; A0QSD2; A0QSD3; A0QSD4; A0QSD5; A0QSD6; A0QSD7; A0QSD8; A0QSD9; A0QSE0; A0QSF9; A0QSG0; A0QSG1; A0QSG2; A0QSG3; A0QSG4; A0QSG5; A0QSG6; A0QSG7; A0QSG8; A0QSL4; A0QSL5; A0QSL6; A0QSL7; A0QSL9; A0QSP8; A0QSP9; A0QTP4; A0QV03; A0QV37; A0QV42; A0QVB8; A0QVQ3; A0QYU6; A0QYU7; A0R102; A0R150; A0R151; A0R3D2; A0R3I9; A0R7F6; A0R7F7; A0R7K0;
1-66
100
Structure of Mycobacterium smegmatis 50S ribosomal subunit bound to HflX and chloramphenicol:50S-Hf… Heteromer
A0QS39; A0QSD1; A0QSD2; A0QSD3; A0QSD4; A0QSD6; A0QSD8; A0QSD9; A0QSF9; A0QSG0; A0QSG4; A0QSG5; A0QSG7; A0QSG8; A0QSL4; A0QSL9; A0QSP8; A0QTP4; A0QV03; A0QV42; A0QVY1; A0QYU6; A0QYU7; A0R150; A0R151; A0R3D2; A0R3I9; A0R7F6; A0R7K0;
1-48
100.0GCP;CLM;
Structure of Mycobacterium smegmatis HflX bound to a 70S ribosome Heteromer
A0A2U9Q0X2; A0QR10; A0QS39; A0QS45; A0QS62; A0QS96; A0QS97; A0QSD0; A0QSD1; A0QSD2; A0QSD3; A0QSD4; A0QSD5; A0QSD6; A0QSD7; A0QSD8; A0QSD9; A0QSE0; A0QSF9; A0QSG0; A0QSG1; A0QSG2; A0QSG3; A0QSG4; A0QSG5; A0QSG6; A0QSG7; A0QSG8; A0QSL4; A0QSL5; A0QSL6; A0QSL7; A0QSL9; A0QSP8; A0QSP9; A0QTP4; A0QV03; A0QV37; A0QV42; A0QVB8; A0QVQ3; A0QVY1; A0QYU6; A0QYU7; A0R102; A0R150; A0R151; A0R3D2; A0R3I9; A0R7F6; A0R7F7; A0R7K0;
1-48
100
M. tuberculosis ribosomal RNA methyltransferase TlyA bound to M. smegmatis 50S ribosomal subunit Heteromer
A0QS39; A0QS45; A0QS62; A0QSD1; A0QSD2; A0QSD3; A0QSD4; A0QSD6; A0QSD8; A0QSD9; A0QSF9; A0QSG0; A0QSG1; A0QSG4; A0QSG5; A0QSG7; A0QSG8; A0QSL4; A0QSL9; A0QSP8; A0QTP4; A0QV03; A0QV42; A0QYU6; A0QYU7; A0R150; A0R151; A0R3D2; A0R3I9; A0R7F6; A0R7K0; P9WJ63;
1-48
100402×MG;ZN;
Structure of Mycobacterium smegmatis 50S ribosomal subunit bound to delNTE-HflX Heteromer
A0QS39; A0QS45; A0QSD1; A0QSD2; A0QSD3; A0QSD4; A0QSD6; A0QSD8; A0QSD9; A0QSF9; A0QSG0; A0QSG1; A0QSG4; A0QSG5; A0QSG7; A0QSG8; A0QSL4; A0QSL9; A0QSP8; A0QTP4; A0QV03; A0QV42; A0QVY1; A0QYU6; A0QYU7; A0R150; A0R151; A0R3D2; A0R3I9; A0R7F6; A0R7K0;
1-48
100
Cryo- EM structure of Mycobacterium smegmatis 50S ribosomal subunit (body 1) of 70S ribosome and Ra… Heteromer
A0QS39; A0QSD1; A0QSD2; A0QSD3; A0QSD4; A0QSD6; A0QSD9; A0QSF9; A0QSG0; A0QSG1; A0QSG4; A0QSG5; A0QSG7; A0QSG8; A0QSL9; A0QSP8; A0QV03; A0QV42; A0QYU6; A0QYU7; A0R150; A0R151; A0R3I9; A0R7F6; A0R7K0;
1-48
100
Structure of Mycobacterium smegmatis 50S ribosomal subunit bound to HflX:50S-HflX-B Heteromer
A0QS39; A0QS45; A0QS62; A0QSD1; A0QSD2; A0QSD3; A0QSD4; A0QSD6; A0QSD8; A0QSD9; A0QSF9; A0QSG0; A0QSG1; A0QSG4; A0QSG5; A0QSG7; A0QSG8; A0QSL4; A0QSL9; A0QSP8; A0QTP4; A0QV03; A0QV42; A0QVY1; A0QYU6; A0QYU7; A0R150; A0R151; A0R3D2; A0R3I9; A0R7F6; A0R7K0;
1-48
100GCP;
Mycobacterium smegmatis 50S ribosomal subunit with Erythromycin Heteromer
A0QS39; A0QS45; A0QS62; A0QSD1; A0QSD2; A0QSD3; A0QSD4; A0QSD6; A0QSD8; A0QSD9; A0QSF9; A0QSG0; A0QSG1; A0QSG4; A0QSG5; A0QSG7; A0QSG8; A0QSL4; A0QSL9; A0QSP8; A0QTP4; A0QV03; A0QV42; A0QYU6; A0QYU7; A0R150; A0R151; A0R3D2; A0R3I9; A0R7F6; A0R7K0;
1-48
100ERY;
Structure of Mycobacterium smegmatis 50S ribosomal subunit bound to HflX and erythromycin:50S-HflX-… Heteromer
A0QS39; A0QS45; A0QSD1; A0QSD2; A0QSD3; A0QSD4; A0QSD6; A0QSD8; A0QSD9; A0QSF9; A0QSG0; A0QSG1; A0QSG4; A0QSG5; A0QSG7; A0QSG8; A0QSL4; A0QSL9; A0QSP8; A0QTP4; A0QV03; A0QV42; A0QVY1; A0QYU6; A0QYU7; A0R150; A0R151; A0R3D2; A0R3I9; A0R7F6; A0R7K0;
1-48
100GCP;ERY;
Structure of Mycobacterium smegmatis 50S ribosomal subunit bound to HflX:50S-HflX-A Heteromer
A0QS39; A0QS45; A0QS62; A0QSD1; A0QSD2; A0QSD3; A0QSD4; A0QSD6; A0QSD8; A0QSD9; A0QSF9; A0QSG0; A0QSG1; A0QSG4; A0QSG5; A0QSG7; A0QSG8; A0QSL4; A0QSL9; A0QSP8; A0QTP4; A0QV03; A0QV42; A0QVY1; A0QYU6; A0QYU7; A0R150; A0R151; A0R3D2; A0R3I9; A0R7F6; A0R7K0;
1-48
100GCP;
Cryo- EM structure of Mycobacterium smegmatis 50S ribosomal subunit (body 1) of 70S ribosome, bS1 a… Heteromer
A0QS39; A0QSD1; A0QSD2; A0QSD3; A0QSD4; A0QSD6; A0QSD9; A0QSF9; A0QSG0; A0QSG1; A0QSG4; A0QSG5; A0QSG7; A0QSG8; A0QSL9; A0QSP8; A0QV03; A0QV42; A0QYU6; A0QYU7; A0R150; A0R151; A0R3I9; A0R7F6; A0R7K0;
1-48
100
Mycobacterium smegmatis 50S ribosomal subunit-HflX complex Heteromer
A0QS39; A0QS45; A0QS62; A0QSD1; A0QSD2; A0QSD3; A0QSD4; A0QSD6; A0QSD8; A0QSD9; A0QSF9; A0QSG0; A0QSG1; A0QSG4; A0QSG5; A0QSG7; A0QSG8; A0QSL4; A0QSL9; A0QSP8; A0QTP4; A0QV03; A0QV42; A0QVY1; A0QYU6; A0QYU7; A0R150; A0R151; A0R3D2; A0R3I9; A0R7F6; A0R7K0;
1-48
100GNP;
Cryo- EM structure of Mycobacterium smegmatis 50S ribosomal subunit (body 1) of 70S ribosome, E- tR… Heteromer
A0QS39; A0QSD1; A0QSD2; A0QSD3; A0QSD4; A0QSD6; A0QSD9; A0QSF9; A0QSG0; A0QSG1; A0QSG4; A0QSG5; A0QSG7; A0QSG8; A0QSL9; A0QSP8; A0QV03; A0QV42; A0QYU6; A0QYU7; A0R150; A0R151; A0R3I9; A0R7F6; A0R7K0;
1-48
100
Structure of the 50S large ribosomal subunit from Mycobacterium smegmatis Heteromer
A0QS39; A0QS45; A0QS62; A0QSD1; A0QSD2; A0QSD3; A0QSD4; A0QSD6; A0QSD8; A0QSD9; A0QSF9; A0QSG0; A0QSG1; A0QSG4; A0QSG5; A0QSG7; A0QSG8; A0QSL4; A0QSL9; A0QSP8; A0QTP4; A0QV03; A0QV42; A0QYU6; A0QYU7; A0R150; A0R151; A0R3D2; A0R3I9; A0R7F6; A0R7K0;
1-48
100408×MG;ZN;PHE;
Mycobacterium smegmatis 50S ribosomal subunit from Stationary phase of growth Heteromer
A0QS39; A0QS45; A0QS62; A0QSD1; A0QSD2; A0QSD3; A0QSD4; A0QSD6; A0QSD8; A0QSD9; A0QSF9; A0QSG0; A0QSG1; A0QSG4; A0QSG5; A0QSG7; A0QSG8; A0QSL4; A0QSL9; A0QSP8; A0QTP4; A0QV03; A0QV42; A0QYU6; A0QYU7; A0R150; A0R151; A0R3D2; A0R3I9; A0R7F6; A0R7K0;
1-48
100407×MG;ZN;
Mycobacterium smegmatis 50S ribosomal subunit from Log Phase of growth Heteromer
A0QS39; A0QS45; A0QS62; A0QSD1; A0QSD2; A0QSD3; A0QSD4; A0QSD6; A0QSD8; A0QSD9; A0QSF9; A0QSG0; A0QSG1; A0QSG4; A0QSG5; A0QSG7; A0QSG8; A0QSL4; A0QSL9; A0QSP8; A0QTP4; A0QV03; A0QV42; A0QYU6; A0QYU7; A0R150; A0R151; A0R3D2; A0R3I9; A0R7K0;
1-48
100407×MG;ZN;
Cryo- EM structure of Mycobacterium smegmatis 30S ribosomal subunit (body 2) of 70S ribosome, E- tR… Heteromer
A0QR10; A0QS96; A0QS97; A0QSD0; A0QSD5; A0QSD7; A0QSE0; A0QSG3; A0QSG6; A0QSL5; A0QSL6; A0QSL7; A0QSP9; A0QV37; A0QVQ3; A0QZ86; A0R102; A0R550; A0R7F7; A0R7F9;
56-66
100
Cryo- EM structure of Mycobacterium smegmatis 30S ribosomal subunit (body 2) of 70S ribosome and Ra… Heteromer
A0QR10; A0QS96; A0QS97; A0QSD0; A0QSD5; A0QSD7; A0QSE0; A0QSG3; A0QSG6; A0QSL5; A0QSL6; A0QSL7; A0QSP9; A0QV37; A0QVB8; A0QVQ3; A0QZ86; A0R102; A0R550; A0R7F7; A0R7F9;
56-66
100
Cryo- EM structure of Mycobacterium smegmatis 30S ribosomal subunit (body 2) of 70S ribosome, bS1 a… Heteromer
A0QR10; A0QS96; A0QS97; A0QSD0; A0QSD5; A0QSD7; A0QSE0; A0QSG2; A0QSG3; A0QSG6; A0QSL5; A0QSL6; A0QSL7; A0QSP9; A0QV37; A0QVB8; A0QVQ3; A0QYY6; A0QZ86; A0R102; A0R7F7; A0R7F9;
56-66
100
Structure of the 30S small ribosomal subunit from Mycobacterium smegmatis Heteromer
A0QR10; A0QS96; A0QS97; A0QSD0; A0QSD5; A0QSD7; A0QSE0; A0QSG2; A0QSG3; A0QSG6; A0QSL5; A0QSL6; A0QSL7; A0QSP9; A0QV37; A0QVB8; A0QVQ3; A0R102; A0R7F7;
56-66
100217×MG;ZN;

2 SWISS-MODEL models

TemplateOligo-stateQMEANDisCoRangeLigandsTrg-Tpl Seq id (%)
5o61.1.7monomer0.621-66
ZN;100.00
8v9l.1.pmonomer0.581-66
100.00