W1F756 (W1F756_ECOLX) Escherichia coli ISC7

50S ribosomal protein L18 UniProtKBInterProInteractive Modelling

117 aa; Sequence (Fasta) 280 identical sequences

Sequence Features

 1-117Ribosomal protein L18
IPR005484PF00861

Sequence Alignments

Experimental structures

DescriptionOligo-stateLigandsStructureRangeDownloadAssess
High-resolution structure of the Escherichia coli ribosome Heteromer
P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J3; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6;
14×MPD;PGE;ZN; 263×MG;1PE;GUN;PG4; 12×EDO; 16×PUT;ACY; 11×PEG;SPD;TRS;4ybb1-117
Structure of the WT E coli ribosome bound to tetracycline Heteromer
P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0AG51; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0A7J3;
14×MPD;PGE;1PE;ZN; 267×MG; 12×EDO;GUN;PG4;TAC; 16×PUT;ACY; 11×PEG;SPD;TRS;5j5b1-117
Structure of the Wild-type 70S E coli ribosome bound to Tigecycline Heteromer
P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0AG51; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0A7J3;
14×MPD;PGE;1PE;T1C;ZN; 267×MG; 12×EDO;GUN;PG4; 16×PUT;ACY; 11×PEG;SPD;TRS;5j911-117
'Structure of the 70S E coli ribosome with the U1052G mutation in the 16S rRNA bound to tetracycl... Heteromer
P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0AG51; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0A7J3;
14×MPD;PGE;1PE;ZN; 268×MG; 12×EDO;GUN;PG4;TAC; 16×PUT;ACY; 11×PEG;SPD;TRS;5j7l1-117
Structure of the Escherichia coli ribosome with the U1052G mutation in the 16S rRNA Heteromer
P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0AG51; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0A7J3;
14×MPD;PGE;1PE;ZN; 267×MG; 12×EDO;GUN;PG4; 16×PUT;ACY; 11×PEG;SPD;TRS;5jc91-117
'Structure of the E coli 70S ribosome with the U1052G mutation in 16S rRNA bound to tigecycline' Heteromer
P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0AG51; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0A7J3;
14×MPD;PGE;1PE;T1C;ZN; 268×MG; 12×EDO;GUN;PG4; 16×PUT;ACY; 11×PEG;SPD;TRS;5j8a1-117
High-resolution structure of the Escherichia coli ribosome Heteromer
P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; A8APV6; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0AG51; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0A7J3;
14×MPD;PGE;1PE;ZN; 266×MG; 12×EDO;GUN;PG4; 16×PUT;ACY; 11×PEG;SPD;TRS;5it81-117
Structure of the E coli 70S ribosome with the U1060A mutation in 16S rRNA Heteromer
P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0AG51; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0A7J3;
14×MPD;PGE;1PE;ZN; 266×MG; 12×EDO;GUN;PG4; 16×PUT;ACY; 11×PEG;SPD;TRS;5j881-117
Crystal structure of the bacterial ribosome from Escherichia coli at 3.5 A resolution. Heteromer
P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG62; P0ADZ5; P0A7T3; P0AG65; P0A7T7; P0A7U3; P0A7U7; P0A7V0; P68679; P68919; P60422; P60438; P60723; P62399; P0AG57; P0A7R1; P0AA13; P0ADY5; P02413; P0ADY9; P0AG45; P0A7K6; P0A7L3; P0AG49; P61175; P0ADZ2; P60624; P0A7L8; P0A7M6; P0AG53; P0A7M9; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7J7;
170×MG;4v4q1-117
'Crystal structure of the bacterial ribosome from Escherichia coli in complex with the antibiotic... Heteromer
P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P0A7V0; P68679; P68919; P60422; P60438; P60723; P62399; P0AG57; P0A7R1; P0AA13; P0ADY5; P02413; P0ADY9; P0AG45; P0A7K6; P0A7L3; P0AG49; P61175; P0ADZ2; P60624; P0A7L8; P0A7M6; P0AG53; P0A7M9; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7J7;
KSG; 170×MG;4v4h1-117
Structure of PDF binding helix in complex with the ribosome Heteromer
P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A6K3; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M6; P0AG51; P0A7M9; P0A7V1; P0A7V4; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X4; P0A7R6; P0A7R9; P0A7S4; P0A7T1; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T9; P0A7U3; P0A7U7; P68680;
170×MG;4v5b1-117
'Structural characterization of mRNA-tRNA translocation intermediates (class 4b of the six classes)' Heteromer
P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; Q8X9M2; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P0A7L0; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J3; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7M9; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6;
TRP;FME;4v6p1-117
'Structural characterization of mRNA-tRNA translocation intermediates (class 5 of the six classes)' Heteromer
P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; Q8X9M2; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P0A7L0; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J3; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7M9; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6;
TRP;FME;4v6q1-117
'Structural characterization of mRNA-tRNA translocation intermediates (class 6 of the six classes)' Heteromer
P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; Q8X9M2; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P0A7L0; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J3; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7M9; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6;
TRP;FME;4v6r1-117
Cryo-EM structure of the Escherichia coli 70S ribosome in complex with antibiotic Avilamycin C, m... Heteromer
P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J3; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679;
ZN;6UQ;5kcr1-117
'Structural characterization of mRNA-tRNA translocation intermediates (class 3 of the six classes)' Heteromer
P0A7L0; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J3; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7M9; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; Q8X9M2; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679;
4v6s1-117
Tetracycline resistance protein Tet(O) bound to the ribosome Heteromer
P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7V0; P0A7U7; P68679; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P10952; P0A7L0; P0A7J3; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P60422; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P60438; P0AG51; P0A7M9; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P60723; P62399; P0AG55; P0A7R1;
4v6v1-117
The Hsp15 protein fitted into the low resolution Cryo-EM map of the 50S.nc-tRNA.Hsp15 complex Heteromer
P68919; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P0A7L8; P0A7M6; P0AG51; P0A7M9; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6;
110×MG;3bbx1-117
Activation of GTP Hydrolysis in mRNA-tRNA Translocation by Elongation Factor G Heteromer
P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; Q8X9M2; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7V0; P0A7U7; P68679; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A6M8; P0A7L0; P0A7K6; P60422; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7J3; P0A7M6; P60438; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P60723; P0A7J7; P62399; P0AG55; P0A7R1; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7M9;
GTP;3j9z1-117
Structure of the E. coli ribosome in the Pre-accommodation state Heteromer
P0A7V0; P0A7R9; P0A7S3; P0A7S9; P0AG59; Q8X9M2; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P0A7V3; P68679; P0A7V8; P0A7W1; P02358; P02359; Q3YWV3; P0A7X3; P0A7R5; P68919; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60422; P60624; P0A7L8; P0A7M6; P0AG51; P0A7M9; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P60438; P35024; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10;
4v651-117
Structure of the E. coli ribosome and the tRNAs in Post-accommodation state Heteromer
P0A7V0; P0A7R9; P0A7S3; P0A7S9; P0AG59; Q8X9M2; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P0A7V3; P68679; P0A7V8; P0A7W1; P02358; P02359; Q3YWV3; P0A7X3; P0A7R5; P68919; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60422; P60624; P0A7L8; P0A7M6; P0AG51; P0A7M9; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P60438; P35024; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10;
4v661-117
Activation of GTP Hydrolysis in mRNA-tRNA Translocation by Elongation Factor G Heteromer
P0A7U3; P0A7U7; P68679; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; Q8X9M2; P0A7T3; P0AG63; P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P0A7T7; P0A6M8; P60422; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7M9; P0A7L0; P60438; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P60723; P62399; P0AG55; P0A7J3; P02413; P0A7J7; P0AA10; P0A7R1; P0ADY7; P0AG44; P0ADY3; P0A7K6; P0A7L3; P0AG48;
GTP;3ja11-117
RNC-SRP-SR complex early state Heteromer
P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J3; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0AGD7; P00634; P10121;
433×MG;ZN;GNP;5gad1-117
RNC in complex with a translocating SecYEG Heteromer
P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J3; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0AGA2; P0AG96;
323×MG;ZN;5gae1-117
RNC in complex with SRP Heteromer
P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J3; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0AGD7; P00634;
431×MG;ZN;GNP;5gaf1-117
RNC in complex with SRP-SR in the closed state Heteromer
P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J3; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0AGD7; P00634;
431×MG;ZN;5gag1-117
RNC in complex with SRP with detached NG domain Heteromer
P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J3; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0AGD7; P00634;
431×MG;ZN;5gah1-117
Structural insights into cognate vs. near-cognate discrimination during decoding. Heteromer
P0A7L0; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7M9; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0CE48; P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; Q8X9M2; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679;
4v6k1-117
Structural insights into cognate vs. near-cognate discrimination during decoding. Heteromer
P0CE48; P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; Q8X9M2; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P0A7L0; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7M9; P0A7N4; P0A7N9; P0A7P5; P0A7Q1;
4v6l1-117
'Structure of a bacterial 50S ribosomal subunit in complex with the novel quinoxolidinone antibio... Heteromer
P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6;
A; 382×MG;FME;ZN;JJH;6qul1-117
Structure of the ribosome-SecYE complex in the membrane environment Heteromer
Q8X9Y5; P02647; P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0ADZ4; P0AG59; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; A0A454A8B1; A0A454AA55; P0A7L0; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6;
32×PGV; 101×PEV;4v6m1-117
'Structural characterization of mRNA-tRNA translocation intermediates (50S ribosome of class2 of ... Heteromer
P0A7L0; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J3; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7M9; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; Q8X9M2; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679;
TRP;FME;4v6n1-117
'Structural characterization of mRNA-tRNA translocation intermediates (class 4a of the six classes)' Heteromer
P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; Q8X9M2; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P0A7L0; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J3; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7M9; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6;
TRP;FME;4v6o1-117
50S subunit with EF-G(GDPNP) and RRF bound Heteromer
P68919; P60422; P60438; P60723; P62399; P0AG55; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P0A7L8; P0A7M6; P0AG51; P0A7M9; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7J7; P0A7R1; P0A7L0; P0A6M8; P0A805;
2rdo1-117
Mechanistic insights into the alternative translation termination by ArfA and RF2 Heteromer
P0A7U7; P68679; P36675; P07012; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J3; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3;
5h5u1-117
Quaternary complex between SRP, SR, and SecYEG bound to the translating ribosome Heteromer
P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J3; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0AGA2; P0AG96; P0AGD7; P0AG99; P10121;
ALF;GDP;ZN;MG;5nco1-117
EM structure of ribosome-SRP-FtsY complex in closed state Heteromer
P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0AGD7; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M6; P0AG51; P0A7M9;
110×MG;5aka1-117
MODEL OF E. COLI SRP BOUND TO 70S RNCS Heteromer
P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; O62798; P0AGD7; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M6; P0AG51; P0A7M9;
111×MG;2j281-117
Crystal structure of the E. coli ribosome bound to dalfopristin and quinupristin. Heteromer
P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; Q5SLP7;
271×MG;ZN;DOL;4u262-117
Crystal structure of the E. coli ribosome bound to flopristin and linopristin. Heteromer
P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; Q5SLP7;
271×MG;VIF;ZN;4u272-117
Crystal structure of the E. coli ribosome bound to flopristin. Heteromer
P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; Q5SLP7;
271×MG;VIF;ZN;4u202-117
Control of ribosomal subunit rotation by elongation factor G Heteromer
P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7J3; P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P0A6M8;
GCP; 185×MG;ZN;4v9p2-117
Crystal structure of the E. coli ribosome bound to dalfopristin. Heteromer
P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; Q5SLP7;
271×MG;ZN;DOL;4u242-117
Crystal structure of the E. coli ribosome bound to virginiamycin M1. Heteromer
P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; Q5SLP7;
VIR; 271×MG;ZN;4u252-117
Control of ribosomal subunit rotation by elongation factor G Heteromer
P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7J3; P0A7K2; P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P0A6M8;
GCP; 187×MG;ZN;4v9o2-117
Crystal structure of the E. coli ribosome bound to quinupristin. Heteromer
P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; Q5SLP7;
271×MG;ZN;4u1u2-117
Crystal structure of the E. coli ribosome bound to linopristin. Heteromer
P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; Q5SLP7;
271×MG;ZN;4u1v2-117
Structures of the bacterial ribosome in classical and hybrid states of tRNA binding Heteromer
P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P0A805; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6;
271×MG;ZN;4v9d2-117
4,5-linked aminoglycoside antibiotics regulate the bacterial ribosome by targeting dynamic confor... Heteromer
P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P0A805; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; Q5SLP7;
ZN; 269×MG;PAR;4woi2-117
Crystal structure of the E. coli ribosome bound to negamycin. Heteromer
P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; Q5SLP7;
271×MG;ZN;4wf12-117
Crystal structure of the E. coli ribosome bound to erythromycin. Heteromer
P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6;
ZN; 182×MG;ERY;4v7u2-117
Crystal structure of the E. coli ribosome bound to CEM-101 Heteromer
P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679;
182×MG;EM1;ZN;4www2-117
Crystal structure of the E. coli 70S ribosome in an intermediate state of ratcheting Heteromer
P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6;
184×MG;ZN;4v6c2-117
Crystal structure of the E. coli ribosome bound to chloramphenicol. Heteromer
P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6;
CLM; 183×MG;ZN;4v7t2-117
'Crystal Structure of Release Factor RF3 Trapped in the GTP State on a Rotated Conformation of th... Heteromer
C3TPN2; C3SQX2; C3SR62; C3SR27; C3SFQ7; C3SQS2; C3SR12; C3SRY2; C3SQT7; C3SR57; C3SQR7; C3SR52; C3SR07; C3SSQ7; C3SYP2; C3SQY7; C3SFP7; C3SQW2; P0A7U7; C3STZ7; P0A7I4; C3SSG7; C3SME2; C3SQY2; C3SR32; C3TE02; C3SME7; C3SLL2; C3T7Q2; C3SR47; C3SQV7; C3SQU2; C3SQU7; C3SR02; C3SR17; C3SIB7; C3SIC7; C3SIB2; C3SRX7; C3SQZ2; C3SR37; C3SQX7; C3SR72; C3SYQ7; C3T7Q7; C3SSG2; C3SQW7; C3SQV2; C3SQZ7; C3T3H7;
493×MG;GNP;4v852-117
Crystal structure of the bacterial ribosome from Escherichia coli in complex with neomycin. Heteromer
P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P0A7V0; P68679; P0A7J7; P60422; P60438; P0ADY3; P0A7K6; P60723; P0AG51; P0A7N4; P0A7Q6; P0A7N9; P0A7Q1; P68919; P0A7P5; P02413; P0ADY7; P0A7M6; P0A7R1; P0AA10; P0AG44; P0A7L3; P61175; P60624; P62399; P0AG55; P0AG48; P0ADZ0; P0A7M2; P0A7L8;
170×MG;ZN;NMY;4v522-117
Crystal Structure of Ribosome with messenger RNA and the Anticodon stem-loop of P-site tRNA. Heteromer
P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; Q8X9M2; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6;
181×MG;ZN;4v502-117
Crystal structure of the E. coli ribosome bound to telithromycin. Heteromer
P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6;
181×MG;TEL;ZN;4v7s2-117
Crystal structure of the E. coli ribosome bound to clindamycin. Heteromer
P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6;
ZN; 182×MG;CLY;4v7v2-117
'Crystal structure of the bacterial ribosome from Escherichia coli in complex with ribosome recyc... Heteromer
P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P0A7V0; P68679; P0A7J7; P60422; P60438; P0ADY3; P0A7K6; P60723; P0AG51; P0A7N4; P0A7Q6; P0A7N9; P0A7Q1; P68919; P0A7P5; P02413; P0ADY7; P0A7M6; P0A7R1; P0AA10; P0AG44; P0A7L3; P61175; P60624; P62399; P0AG55; P0AG48; P0ADZ0; P0A7M2; P0A7L8; Q9WX76;
170×MG;ZN;4v542-117
Allosteric control of the ribosome by small-molecule antibiotics Heteromer
P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P0A805; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6;
266×MG;ZN;NMY;4v9c2-117
Crystal structure of the bacterial ribosome from Escherichia coli in complex with hygromycin B. Heteromer
P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG62; P0ADZ5; P0A7T3; P0AG65; P0A7T7; P0A7U3; P0A7U7; P0A7V0; P68679; P68919; P60422; P60438; P60723; P62399; P0AG57; P0A7R1; P0AA13; P0ADY5; P02413; P0ADY9; P0AG45; P0A7K6; P0A7L3; P0AG49; P61175; P0ADZ2; P60624; P0A7L8; P0A7M6; P0AG53; P0A7M2; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7J7;
170×MG;ZN;HYG;4v642-117
'Crystal structure of the bacterial ribosome from Escherichia coli in complex with spectinomycin ... Heteromer
P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P0A7V0; P68679; P0ADZ4; P0AG59; P0A7J7; P60422; P60438; P0ADY3; P0A7K6; P60723; P0AG51; P0A7N4; P0A7Q6; P0A7N9; P0A7Q1; P68919; P0A7P5; P02413; P0ADY7; P0A7M6; P0A7R1; P0AA10; P0AG44; P0A7L3; P61175; P60624; P62399; P0AG55; P0AG48; P0ADZ0; P0A7M2; P0A7L8;
SCM; 170×MG;ZN;NMY;4v572-117
Crystal structure of the bacterial ribosome from Escherichia coli in complex with gentamicin. Heteromer
P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P0A7V0; P68679; P0A7J7; P60422; P60438; P0ADY3; P0A7K6; P60723; P0AG51; P0A7N4; P0A7Q6; P0A7N9; P0A7Q1; P68919; P0A7P5; P02413; P0ADY7; P0A7M6; P0A7R1; P0AA10; P0AG44; P0A7L3; P61175; P60624; P62399; P0AG55; P0AG48; P0ADZ0; P0A7M2; P0A7L8;
170×MG;ZN;LLL;4v532-117
'Crystal Structure of Release Factor RF3 Trapped in the GTP State on a Rotated Conformation of th... Heteromer
P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P0A7I4; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P60422; P60438; P60723; P62399; P0AG55; P0A7J3; P0A7J7; P0A7K2; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919;
GNP;MG;4v892-117
Crystal structure of the E. coli 70S ribosome in an intermediate state of ratcheting Heteromer
P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6;
184×MG;ZN;4v6e2-117
Crystal structure of the E. coli 70S ribosome in an intermediate state of ratcheting Heteromer
P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6;
184×MG;ZN;4v6d2-117
'Crystal structure of the bacterial ribosome from Escherichia coli in complex with spectinomycin.' Heteromer
P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P0A7V0; P68679; P0ADZ4; P0AG59; P0A7J7; P60422; P60438; P0ADY3; P0A7K6; P60723; P0AG51; P0A7N4; P0A7Q6; P0A7N9; P0A7Q1; P68919; P0A7P5; P02413; P0ADY7; P0A7M6; P0A7R1; P0AA10; P0AG44; P0A7L3; P61175; P60624; P62399; P0AG55; P0AG48; P0ADZ0; P0A7M2; P0A7L8;
SCM; 170×MG;ZN;4v562-117
E. coli pH03H9 complex Heteromer
P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J3; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60625; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7M9; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7;
225×MG;ZN;6by12-117
'Crystal structure of the bacterial ribosome from Escherichia coli in complex with gentamicin and... Heteromer
P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P0A7V0; P68679; P0A7J7; P60422; P60438; P0ADY3; P0A7K6; P60723; P0AG51; P0A7N4; P0A7Q6; P0A7N9; P0A7Q1; P68919; P0A7P5; P02413; P0ADY7; P0A7M6; P0A7R1; P0AA10; P0AG44; P0A7L3; P61175; P60624; P62399; P0AG55; P0AG48; P0ADZ0; P0A7M2; P0A7L8; Q9WX76;
170×MG;ZN;LLL;4v552-117
'Crystal structure of the bacterial ribosome from Escherichia coli in complex with paromomycin an... Heteromer
P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P0A7V0; P68679; P0A7J7; P60422; P60438; P0ADY3; P0A7K6; P60723; P0AG51; P0A7N4; P0A7Q6; P0A7N9; P0A7Q1; P68919; P0A7P5; P02413; P0ADY7; P0A7M6; P0A7R1; P0AA10; P0AG44; P0A7L3; P61175; P60624; P62399; P0AG55; P0AG48; P0ADZ0; P0A7M2; P0A7L8; Q9WX76;
ZN; 170×MG;PAR;4v5y2-117
E. coli 70S-fMetVal-tRNAVal-tRNAfMet complex in intermediate pre-translocation state (pre3) Heteromer
P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7L0;
FME;VAL;4v702-117
50S ribosomal subunit assembly intermediate state 4 Heteromer
P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0AA10; P0ADY3; P02413; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1;
6gc02-117
70S ribosome-EF-Tu H84A complex with GTP and near-cognate tRNA (Complex C2) Heteromer
B7MCT2; B7MCT5; B7MCT4; B7MCS3; B7MCS0; B7MLK8; B7MIW9; B7MBZ2; B7MCS5; A8A5A6; B7MCS8; B7MCR0; B7MIU4; B7MAS6; B7MBV5; B7MCT0; P0ADZ2; B7L4J5; B7LAK9; B7MBV4; B7MFJ8; B7MCS7; B7MCR7; B7MJ76; B7MFJ7; B7MGC4; B7MAS7; A8A5A4; B7MIX1; B7MI68; B7MBF0; B7MCS9; B7MCR2; P0A7W3; B7NGD4; B7MCV6; B7MCS1; B7MBZ1; B7MCT6; B7MCR3; B7MCV7; P0A7T1; B7MCS2; B7MB86; B7MIU7; B7MCS6; B7MLK7; B7MCT1; B7MAE3; A8A4M2; A7ZUJ2;
GTP; 1480×MG;FME;K;PHE;5wf02-117
Cryo-EM structure of stringent response factor RelA bound to ErmCL-stalled ribosome complex Heteromer
P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7M9; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U7; P68679; P0A7J3; P0A7J7; P0AG59; P0A7U3; P0AG20;
5l3p2-117
Structural basis for ArfA-RF2 mediated translation termination on stop-codon lacking mRNAs Heteromer
P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7M9; P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P36675; P07012;
5mgp2-117
'70S ribosome bound with near-cognate ternary complex base-paired to A site codon, open 30S (Stru... Heteromer
P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J3; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7M9; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P0A7L0; P0CE47;
GCP;FME;LYS;5uyp2-117
Cryo-EM structure of a rotated E. coli 70S ribosome in complex with RF3-GDPCP(RF3-only) Heteromer
P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7J3; P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P0A7I4; Q8WSY8;
GCP;6gxp2-117
'70S ribosome bound with near-cognate ternary complex base-paired to A site codon, closed 30S (St... Heteromer
P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J3; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7M9; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P0A7L0; P0CE47;
GCP;MG;FME;LYS;5uyq2-117
'Cryo-EM structure of the proline-rich antimicrobial peptide Api137 bound to the terminating ribo... Heteromer
P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7J3; P0A7M9; P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P0A7I0; Q8WSY8;
5o2r2-117
Cryo-EM structure of the Escherichia coli 70S ribosome in complex with antibiotic Evernimycin, mR... Heteromer
P60422; P60438; P60723; P62399; P0AG55; P0A7K2; P0A7R1; P0A7J3; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7M9; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P21598;
EVN;5kcs2-117
70S ribosome-EF-Tu H84A complex with GTP and near-cognate tRNA (Complex C4) Heteromer
B7MCT2; B7MCT5; B7MCT4; B7MCS3; B7MCS0; B7MLK8; B7MIW9; B7MBZ2; B7MCS5; A8A5A6; B7MCS8; B7MCR0; B7MIU4; B7MAS6; B7MBV5; B7MCT0; P0ADZ2; B7L4J5; B7LAK9; B7MBV4; B7MFJ8; B7MCS7; B7MCR7; B7MJ76; B7MFJ7; B7MGC4; B7MAS7; A8A5A4; B7MIX1; B7MI68; B7MBF0; B7MCS9; B7MCR2; P0A7W3; B7NGD4; B7MCV6; B7MCS1; B7MBZ1; B7MCT6; B7MCR3; B7MCV7; P0A7T1; B7MCS2; B7MB86; B7MIU7; B7MCS6; B7MLK7; B7MCT1; B7MAE3; A8A4M2; A7ZUJ2;
GTP; 1471×MG;FME;K;PHE;5wfs2-117
Structure of RelA bound to ribosome in absence of A/R tRNA (Structure I) Heteromer
P0AG20; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J3; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7M9; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679;
5kps2-117
70S ribosome-EF-Tu H84A complex with GppNHp Heteromer
P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7J3; P0A7M9; P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P0CE48;
1904×MG;FME;K;PHE;GNP;5wdt2-117
'Cryo-EM structure of an E. coli 70S ribosome in complex with RF3-GDPCP, RF1(GAQ) and Pint-tRNA (... Heteromer
P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7J3; P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P0A7I0; B7LEM0; Q8WSY8;
GCP;6gwt2-117
E. coli 70S-fMetVal-tRNAVal-tRNAfMet complex in hybrid pre-translocation state (pre5a) Heteromer
P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7L0;
FME;VAL;4v732-117
Polyproline-stalled ribosome in the presence of elongation-factor P (EF-P) Heteromer
P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7M9; P0A7L0; P0A6N4;
PRO;6enu2-117
Mechanisms of Ribosome Stalling by SecM at Multiple Elongation Steps Heteromer
P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P60422; P0A7J7; P60438; P60723; P62399; P0AG55; P0A7R1; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P62395;
CLM;3jbv2-117
Structure of RelA bound to ribosome in presence of A/R tRNA (Structure II) Heteromer
P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J3; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7M9; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P0AG20;
5kpv2-117
Structure of RelA bound to ribosome in presence of A/R tRNA (Structure III) Heteromer
P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J3; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7M9; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P0AG20;
5kpw2-117
Structure of RelA bound to ribosome in presence of A/R tRNA (Structure IV) Heteromer
P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J3; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7M9; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P0AG20;
5kpx2-117
'TnaC-stalled ribosome complex with the titin I27 domain folding close to the ribosomal exit tunnel' Heteromer
P60624; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7J3; P0A7K2; P0AD89; P68919; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P0A7L8; P0A7M2; P0A7M6; P0AG51; Q8WZ42;
TRP; 143×MG;ZN;6i0y2-117
'Cryo-EM structure of tetracycline resistance protein TetM bound to a translating E.coli ribosome' Heteromer
P0A7V0; P0A7V8; P0A7W1; P02358; P0A7W7; P0A7R9; P0A7S3; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U7; P68679; P21598; P0A7V3; P02359; P0A7X3; P0A7R5; P0A7S9; P0AG59; P0A7U3; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7J3; P0A7M9;
3j9y2-117
E. coli 70S-fMetVal-tRNAVal-tRNAfMet complex in classic pre-translocation state (pre1a) Heteromer
P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7L0;
FME;VAL;4v6y2-117
Structure of the E. coli 50S subunit with ErmCL nascent chain Heteromer
P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7J3; P0A7K2; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P03063;
ERY;3j7z2-117
E. coli 70S-fMetVal-tRNAVal-tRNAfMet complex in classic pre-translocation state (pre1b) Heteromer
P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7L0;
FME;VAL;4v6z2-117
50S ribosomal subunit assembly intermediate state 5 Heteromer
P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0AA10; P0ADY3; P02413; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0ADY7;
6gbz2-117
70S-fMetVal-tRNAVal-tRNAfMet complex in hybrid pre-translocation state (pre5b) Heteromer
P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7L0;
FME;VAL;4v742-117
70S ribosome-EF-Tu wt complex with GppNHp Heteromer
P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7J3; P0A7M9; P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P0CE48;
1618×MG;FME;K;PHE;GNP;5we42-117
50S ribosomal subunit assembly intermediate state 3 Heteromer
P68919; P60422; P60438; P60723; P0AG55; P0AA10; P0ADY3; P02413; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P0A7M2; P0A7M6; P0A7N4; P0A7P5; P62399; P0AG51; P0A7R1; P0A7L8;
6gc42-117
E. coli 70S-fMetVal-tRNAVal-tRNAfMet complex in classic post-translocation state (post1) Heteromer
P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7L0;
FME;VAL;4v752-117
E. coli 70S-fMetVal-tRNAVal-tRNAfMet complex in intermediate post-translocation state (post2a) Heteromer
P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7L0;
FME;VAL;4v762-117
70S ribosome-EF-Tu H84A complex with GTP and cognate tRNA Heteromer
P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; A7ZSJ9; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7J3; P0A7M9; P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P0CE48;
GTP; 662×MG;FME;K;PHE;5we62-117
70S structure prior to bypassing Heteromer
P23992; P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7J3; P0A7M9;
5np62-117
E. coli 70S-fMetVal-tRNAVal-tRNAfMet complex in intermediate post-translocation state (post2b) Heteromer
P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7L0;
FME;VAL;4v772-117
E. coli 70S-fMetVal-tRNAVal-tRNAfMet complex in intermediate post-translocation state (post3a) Heteromer
P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7L0;
FME;VAL;4v782-117
Structure of tmRNA SmpB bound in P site of E. coli 70S ribosome Heteromer
U9Y9P1; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J3; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7M9; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679;
429×MG;ZN;6q982-117
50S ribosomal subunit assembly intermediate - 50S rec* Heteromer
P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1;
ZN;MG;6gc82-117
70S ribosome with S1 domains 1 and 2 (Class 1) Heteromer
P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J3; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7M9; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P0A7L0; P0AG67;
FME;6bu82-117
Cryo-EM structure of an ErmBL-stalled ribosome in complex with P-, and E-tRNA Heteromer
P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6;
ERY;5ju82-117
E. coli 70S-fMetVal-tRNAVal-tRNAfMet complex in intermediate post-translocation state (post3b) Heteromer
P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7L0;
FME;VAL;4v792-117
Ternary complex-bound E.coli 70S ribosome. Heteromer
P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; Q8X9M2; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0CE48; P0A7L0; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P60422; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P60438; P60723; P62399; P0AG55; P0A7R1;
GDP;4v692-117
E. coli 70S-fMetVal-tRNAVal-tRNAfMet complex in intermediate pre-translocation state (pre2) Heteromer
P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7L0;
FME;VAL;4v712-117
E. coli 70S-fMetVal-tRNAVal post-translocation complex (post4) Heteromer
P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7L0;
FME;VAL;4v7a2-117
Structure of the 70S ribosome with SECIS-mRNA and P-site tRNA (Initial complex, IC) Heteromer
P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P60422; P60438; P60723; P62399; P0AG55; P0A7J7; P0A7R1; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7M9;
ZN;5lza2-117
Structure of SelB-Sec-tRNASec bound to the 70S ribosome in the initial binding state (IB) Heteromer
P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P14081; P60422; P60438; P60723; P62399; P0AG55; P0A7J7; P0A7R1; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7M9;
ZN;GNP;FME;SEC;MG;5lzb2-117
'Structure of the Ribosome with Elongation Factor G Trapped in the Pre-Translocation State (pre-t... Heteromer
P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P0A7L0; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J3; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6;
ZN;4v7c2-117
E.coli RF1 bound to E.coli 70S ribosome in response to UAU sense A-site codon Heteromer
B7MIX0; B7MCT2; B7MCT5; B7MCT4; B7MCS3; B7MCS0; B7MLK8; B7MIX1; B7MIW9; B7MBZ2; B7MCS5; P02413; B7MCS8; B7N179; B7MIU4; B7MAS6; B7MBV5; B7MCT0; B7MCT3; P60624; P68919; B7MBV4; B7MFJ8; B7MCS7; B7MCR7; B7MI68; B7MJ76; B7MFJ7; B7MGC4; B7MAS7; P0A7Q6; B7MKB3; B7MBF0; B7MCS9; B7MCR2; P0A7W1; P02358; B7MCV6; B7MCS1; B7MBZ1; B7MCT6; B7MCR3; B7MCV7; P0A7S9; B7MCS2; B7MB86; B7MIU7; B7MCS6; B7MLK7; B7MCT1; B7MAE3; P68679;
6dnc2-117
Structure of SelB-Sec-tRNASec bound to the 70S ribosome in the codon reading state (CR) Heteromer
P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P14081; P60422; P60438; P60723; P62399; P0AG55; P0A7J7; P0A7R1; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7M9;
ZN;GNP;FME;SEC;MG;5lzc2-117
Structure of the Ribosome with Elongation Factor G Trapped in the Pre-Translocation State (pre-tr... Heteromer
P0A7L0; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J3; P0A7J7; P0A7K2; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P0A6M8;
ZN;4v7d2-117
Structure of Escherichia coli EF4 in posttranslocational ribosomes (Post EF4) Heteromer
P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7L0; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P60785;
3jcd2-117
Structure of SelB-Sec-tRNASec bound to the 70S ribosome in the GTPase activated state (GA) Heteromer
P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P14081; P60422; P60438; P60723; P62399; P0AG55; P0A7J7; P0A7R1; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7M9;
ZN;CL; 147×MG;GNP;SEC;FME;5lzd2-117
Structure of the 70S ribosome with Sec-tRNASec in the classical pre-translocation state (C) Heteromer
P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P60422; P60438; P60723; P62399; P0AG55; P0A7J7; P0A7R1; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7M9;
ZN;5lze2-117
Cryo-EM structure of an ErmBL-stalled ribosome in complex with A-, P-, and E-tRNA Heteromer
P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6;
ERY;LYS;5jte2-117
3.2 A cryo-EM ArfA-RF2 ribosome rescue complex (Structure II) Heteromer
P36675; P0A7L0; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J3; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7M9; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P07012; P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679;
360×MG;ZN;5u9f2-117
Cryo-EM structure of a polyproline-stalled ribosome in the absence of EF-P Heteromer
P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P60422; P60438; P60723; P62399; P0AG55; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7M9;
6enf2-117
Structure of the 70S ribosome with fMetSec-tRNASec in the hybrid pre-translocation state (H) Heteromer
P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P60422; P60438; P60723; P62399; P0AG55; P0A7J7; P0A7R1; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7M9;
ZN;5lzf2-117
3.2 A cryo-EM ArfA-RF2 ribosome rescue complex (Structure I) Heteromer
P36675; P0A7L0; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J3; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7M9; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P07012; P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679;
348×MG;ZN;5u9g2-117
Electron cryo-microscopy structure of EngA bound with the 50S ribosomal subunit Heteromer
P0A7M2; P0ADY3; P02413; P0A7M6; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P60438; P0ADZ0; P0AG51; P60624; P68919; P0A6P5; P60723; P0A7L8; P0A7N4; P0A7L0; P0A7P5; P0A7Q1; P0A7Q6; P60422; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10;
3j8g2-117
Ribosome-SecY complex. Heteromer
P60460; P0A7L0; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; Q8X9M2; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679;
4v7i2-117
'Conformation of methylated GGQ in the peptidyl transferase center during translation termination' Heteromer
B7MCT2; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J3; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; B7M1M6; P0AG51; P0A7M9; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; B7MCT1; P0A7U7; P68679; P07012; P36675;
317×MG;ZN;6c4i2-117
Structures of ribosome-bound initiation factor 2 reveal the mechanism of subunit association Heteromer
P0A7T7; P68679; P0A7U7; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7J3; P0A705; P0A7V3; P0A7V0; P0A7W1; P0A7V8; P02359; P02358; P0A7X3; P0A7W7; P0A7R9; P0A7R5; P0A7S9; P0A7S3; P0ADZ4; P0AG59; P0AG63; P0A7T3; P0A7U3;
195×MG;FME;ZN;GNP;3jcj2-117
Polyproline-stalled ribosome in the presence of A+P site tRNA and elongation-factor P (EF-P) Heteromer
P60422; P60438; P60723; P62399; P0AG55; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7M9; P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P0A6N4; P0A7L0;
PRO;6enj2-117
E. coli 70S-fMetVal-tRNAVal-tRNAfMet complex in hybrid pre-translocation state (pre4) Heteromer
P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7L0;
FME;VAL;4v722-117
70S ribosome-EF-Tu H84A complex with GTP and near-cognate tRNA (Complex C3) Heteromer
P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7J3; P0A7M9; P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P0CE48;
GTP; 1413×MG;FME;K;PHE;5wfk2-117
'70S ribosome bound with cognate ternary complex not base-paired to A site codon (Structure I)' Heteromer
P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J3; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7M9; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P0A7L0; P0CE47;
GCP;5uyk2-117
Structure of the E. coli 50S subunit with ErmBL nascent chain Heteromer
P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51;
UNL;ERY;3j5l2-117
70S ribosome bound with cognate ternary complex base-paired to A site codon (Structure II) Heteromer
P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J3; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7M9; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P0A7L0; P0CE47;
GCP;FME;PHE;5uyl2-117
'Cryo-EM structure of an E. coli 70S ribosome in complex with RF3-GDPCP, RF1(GAQ) and Pint-tRNA (... Heteromer
P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7J3; P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P0A7I0; P0A7I4;
GCP;6gxm2-117
'70S ribosome bound with cognate ternary complex base-paired to A site codon, closed 30S (Structu... Heteromer
P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J3; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7M9; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P0A7L0; P0CE47;
GCP; 383×MG;FME;ZN;PHE;5uym2-117
E. coli 70S d2d8 stapled ribosome Heteromer
P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J3; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7M9; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679;
436×MG;ZN;6hrm2-117
Structure of a hibernating 100S ribosome reveals an inactive conformation of the ribosomal protei... Heteromer
P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7M9; P0AFW2; P0AG67; P0AFX0;
6h4n2-117
'Structures of ribosome-bound initiation factor 2 reveal the mechanism of subunit association: In... Heteromer
P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A705; P0A7V3; P0A7V0; P0A7W1; P0A7V8; P02359; P02358; P0A7X3; P0A7W7; P0A7R9; P0A7R5; P0A7S9; P0A7S3; P0ADZ4; P0AG59; P0AG63; P0A7T3; P0A7U3; P0A7T7; P68679; P0A7U7;
GNP;FME;3jcn2-117
'Cryo-EM structure of an E. coli 70S ribosome in complex with RF3-GDPCP, RF1(GAQ) and Pint-tRNA (... Heteromer
P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7J3; P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P0A7I0; P0A7I4; Q8WSY8;
GCP;6gxn2-117
'70S ribosome bound with near-cognate ternary complex not base-paired to A site codon (Structure ... Heteromer
P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J3; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7M9; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P0A7L0; P0CE47;
GCP;5uyn2-117
'Cryo-EM structure of a rotated E. coli 70S ribosome in complex with RF3-GDPCP, RF1(GAQ) and P/E-... Heteromer
P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7J3; P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P0A7I0; P0A7I4; Q8WSY8;
GCP;6gxo2-117
2.9A Structure of E. coli ribosome-EF-TU complex by cs-corrected cryo-EM Heteromer
P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P0CE48; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7J3; P0A7M9;
GDP; 333×MG;CL;KIR;ZN;NA;FME;5afi2-117
2.9 A cryo-EM structure of VemP-stalled ribosome-nascent chain complex Heteromer
A0A0P7EF65; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7M9; P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679;
5nwy2-117
Structure of ArfA and RF2 bound to the 70S ribosome (accommodated state) Heteromer
P36675; P07012; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J3; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7M9; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679;
440×MG;FME;ZN;5mdv2-117
Structure of RelA bound to the 70S ribosome Heteromer
P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J3; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7M9; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P0AG20;
MET; 299×MG;PAR;ZN;5iqr2-117
Structure of ArfA(A18T) and RF2 bound to the 70S ribosome (pre-accommodated state) Heteromer
P36675; P07012; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J3; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7M9; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679;
438×MG;FME;ZN;5mdw2-117
Structure of the 70S ribosome (empty A site) Heteromer
P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J3; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7M9; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679;
437×MG;FME;ZN;5mdz2-117
Structure of Escherichia coli EF4 in pretranslocational ribosomes (Pre EF4) Heteromer
P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P0A7V0; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7L0; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P60785;
GNP;MG;3jce2-117
Structure of ArfA and TtRF2 bound to the 70S ribosome (pre-accommodated state) Heteromer
P36675; Q5SM01; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J3; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7M9; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679;
450×MG;FME;ZN;5mdy2-117
Structural Basis of Co-translational Quality Control by ArfA and RF2 Bound to Ribosome Heteromer
P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P07012; P36675;
124×MG;ZN;5u4i2-117
Mechanisms of Ribosome Stalling by SecM at Multiple Elongation Steps Heteromer
P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A910;
3jbu2-117
'Molecular basis for the ribosome functioning as a L-tryptophan sensor - Cryo-EM structure of a T... Heteromer
P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7J3; P0A7K2; P0AD89; P68919; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P0A7L8; P0A7M2; P0A7M6; P0AG51;
TRP; 143×MG;ZN;4uy82-117
Cryo-EM structures of the 50S ribosome subunit bound with HflX Heteromer
P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7L0; P25519; P0A7J3; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51;
GNP;MG;5ady2-117
Cryo-EM structures of the 50S ribosome subunit bound with ObgE Heteromer
P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7L0; P0A7P5; P0A7Q1; P0A7Q6; P42641; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8;
4csu2-117
E.Coli 70s Ribosome Stalled During Translation Of Tnac Leader Peptide. Heteromer
P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; Q8X9M2; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7L0; P0A7P5; P0A7Q1; P0A7Q6; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8;
4v5h2-117
Visualization of two tRNAs trapped in transit during EF-G-mediated translocation Heteromer
P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; P0A6M8; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7J3; P0A7K2;
GDP;FUA;4v7b2-117
Structure of tmRNA SmpB bound in A site of E. coli 70S ribosome Heteromer
P0A832; V0A5J4; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J3; P0A7J7; A0A379XJZ2; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; D7X2Z6; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; E3PKZ6; A0A0E0XV41; P0A7M9; D7XAL4; P0A7N9; P0A7P5; P0A7Q1; P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; A0A029HJ91; P0A7R5; P0A7R9; F5NAB8; H4IXV7; P0AG59; P0ADZ4; S0UHH0; P0AG63; P0A7T7; U9ZUL7; P0A7U7; P68679;
439×MG;ZN;6q973-117
Structure of tmRNA SmpB bound past E site of E. coli 70S ribosome Heteromer
P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J3; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P0AG48; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M2; P0A7M6; P0AG51; P0A7M9; P0A7N4; P0A7N9; P0A7P5; P0A7Q1; P0A7Q6; P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; F5NAB8; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P68679; A0A0K4SFK5;
437×MG;ZN;6q9a3-117
Structure of a pre-translocational E. coli ribosome obtained by fitting atomic models for RNA and... Heteromer
P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P0A7L0; P0A7K2; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M6; P0AG51; P0A7N4; P0A7N9;
4v4v3-115
Structure of a SecM-stalled E. coli ribosome complex obtained by fitting atomic models for RNA an... Heteromer
P0A7V0; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG59; P0ADZ4; P0A7T3; P0AG63; P0A7T7; P0A7U3; P0A7U7; P0A7L0; P0A7K2; P60422; P60438; P60723; P62399; P0AG55; P0A7R1; P0A7J7; P0AA10; P0ADY3; P02413; P0ADY7; P0AG44; P0A7K6; P0A7L3; P61175; P0ADZ0; P60624; P68919; P0A7L8; P0A7M6; P0AG51; P0A7N4; P0A7N9;
4v4w3-115
Real space refined coordinates of the 30S and 50S subunits fitted into the low resolution cryo-EM... Heteromer
P60422; P60438; P60723; P62399; P0AG57; P0A7R1; P0A7J7; P0AA10; P0ADY5; P02413; P0ADY9; P0AG45; P0A7K6; P0A7L3; P61175; P0ADZ2; P60624; P68919; P0A7L8; P0A7M6; P0AG53; P0A7N4; P0A7N9; P0A7Q6; P0A7V3; P0A7V8; P0A7W1; P02358; P02359; P0A7W7; P0A7X3; P0A7R5; P0A7R9; P0A7S3; P0A7S9; P0AG62; P0ADZ5; P0A7T3; P0AG65; P0A7T7; P0A7U3; P0A7U7;
4v473-115
Real space refined coordinates of the 30S and 50S subunits fitted into the low resolution cryo-EM... Heteromer
P60422; P60438; P60723; P62399; P0AG57; P0A7R1; P0A7J7; P0AA10; P0ADY5; P02413; P0ADY9; P0AG45; P0A7K6; P0A7L3; P61175; P0ADZ2; P60624; P68919; P0A7L8; P0A7M6; P0AG53; P0A7N4; P0A7N9; P0A7Q6; P0A7V2; P0A7V5; P0A7W0; P0A7W6; P02358; P02359; P0A7W9; P0A7X3; P0A7R5; P0A7R9; P0A7S7; P0A7T2; P0AG62; P0ADZ5; P0A7T5; P0AG65; P0A7T8; P0A7U3; P0A7U9;
4v483-115