33
|
142
|
6y69J |
Cryo-em structure of an escherichia coli 70s ribosome in complex with antibiotic tetracenomycinx |
39
|
142
|
6xz7J |
E. coli 50s ribosomal subunit in complex with dirithromycin, fmet-phe-trna(phe) and deacylated trna(imet). |
32
|
142
|
6wyvO |
E. coli 50s ribosome bound to compounds 47 and vs1 |
24
|
143
|
6wrsV |
Structure of the 50s subunit of the ribosome from methicillin resistant staphylococcus aureus in complex with the antibiotic, tedizolid |
27
|
143
|
6wruV |
Structure of the 50s subunit of the ribosome from methicillin resistant staphylococcus aureus in complex with an isomer of the tedizolid |
33
|
143
|
6wqnV |
Structure of the 50s subunit of the ribosome from methicillin resistant staphylococcus aureus in complex with the antibiotic, contezolid |
25
|
143
|
6wqqV |
Structure of the 50s subunit of the ribosome from methicillin resistant staphylococcus aureus in complex with the antibiotic, radezolid |
30
|
142
|
6wntj |
50s ribosomal subunit without free 5s rrna and perturbed ptc |
31
|
142
|
6wnwj |
Active 70s ribosome without free 5s rrna and bound with a- and p- trna |
30
|
142
|
6wnvj |
70s ribosome without free 5s rrna and with a perturbed ptc |
23
|
142
|
6wdkj |
Cryo-em of elongating ribosome with ef-tu*gtp elucidates trna proofreading (non-cognate structure v-a2) |
26
|
142
|
6wdmj |
Cryo-em of elongating ribosome with ef-tu*gtp elucidates trna proofreading (non-cognate structure v-b2) |
28
|
142
|
6wdlj |
Cryo-em of elongating ribosome with ef-tu*gtp elucidates trna proofreading (non-cognate structure v-b1) |
27
|
142
|
6wdgj |
Cryo-em of elongating ribosome with ef-tu*gtp elucidates trna proofreading (cognate structure vi-b) |
24
|
142
|
6wdij |
Cryo-em of elongating ribosome with ef-tu*gtp elucidates trna proofreading (non-cognate structure iv-b2) |
30
|
142
|
6wdhj |
Cryo-em of elongating ribosome with ef-tu*gtp elucidates trna proofreading (non-cognate structure iv-b1) |
25
|
142
|
6wdjj |
Cryo-em of elongating ribosome with ef-tu*gtp elucidates trna proofreading (non-cognate structure v-a1) |
28
|
142
|
6wdbj |
Cryo-em of elongating ribosome with ef-tu*gtp elucidates trna proofreading (cognate structure iv-a) |
32
|
142
|
6wddj |
Cryo-em of elongating ribosome with ef-tu*gtp elucidates trna proofreading (cognate structure v-a) |
31
|
142
|
6wdej |
Cryo-em of elongating ribosome with ef-tu*gtp elucidates trna proofreading (cognate structure v-b) |
28
|
142
|
6wdfj |
Cryo-em of elongating ribosome with ef-tu*gtp elucidates trna proofreading (cognate structure vi-a) |
28
|
142
|
6wdcj |
Cryo-em of elongating ribosome with ef-tu*gtp elucidates trna proofreading (cognate structure iv-b) |
28
|
142
|
6wd7j |
Cryo-em of elongating ribosome with ef-tu*gtp elucidates trna proofreading (cognate structure ii-d) |
35
|
142
|
6wd9j |
Cryo-em of elongating ribosome with ef-tu*gtp elucidates trna proofreading (cognate structure iii-b) |
29
|
142
|
6wd6j |
Cryo-em of elongating ribosome with ef-tu*gtp elucidates trna proofreading (cognate structure ii-c2) |
30
|
142
|
6wd5j |
Cryo-em of elongating ribosome with ef-tu*gtp elucidates trna proofreading (cognate structure ii-c1) |
28
|
142
|
6wdaj |
Cryo-em of elongating ribosome with ef-tu*gtp elucidates trna proofreading (cognate structure iii-c) |
27
|
142
|
6wd4j |
Cryo-em of elongating ribosome with ef-tu*gtp elucidates trna proofreading (cognate structure ii-b2) |
26
|
142
|
6wd8j |
Cryo-em of elongating ribosome with ef-tu*gtp elucidates trna proofreading (cognate structure iii-a) |
25
|
142
|
6wd3j |
Cryo-em of elongating ribosome with ef-tu*gtp elucidates trna proofreading (cognate structure ii-b1) |
33
|
142
|
6wd2j |
Cryo-em of elongating ribosome with ef-tu*gtp elucidates trna proofreading (cognate structure ii-a) |
30
|
142
|
6wd1j |
Cryo-em of elongating ribosome with ef-tu*gtp elucidates trna proofreading (cognate structure i-b) |
32
|
142
|
6wd0j |
Cryo-em of elongating ribosome with ef-tu*gtp elucidates trna proofreading (cognate structure i-a) |
30
|
142
|
6vwnG |
70s ribosome bound to hiv frameshifting stem-loop (fss) and p-site trna (non-rotated conformation, structure ii) |
38
|
142
|
6vwlG |
70s ribosome bound to hiv frameshifting stem-loop (fss) and p/e trna (rotated conformation) |
31
|
142
|
6vwmH |
70s ribosome bound to hiv frameshifting stem-loop (fss) and p-site trna (non-rotated conformation, structure i) |
37
|
142
|
6pctO |
E. coli 50s ribosome bound to compound 41q |
34
|
142
|
6pc8O |
E. coli 50s ribosome bound to compound 40q |
39
|
142
|
6pc5O |
E. coli 50s ribosome bound to compounds 46 and vs1 |
35
|
142
|
6pchO |
E. coli 50s ribosome bound to compound 21 |
40
|
142
|
6pcrO |
E. coli 50s ribosome bound to compound 40o |
35
|
142
|
6pcsO |
E. coli 50s ribosome bound to compound 40e |
41
|
142
|
6pc7O |
E. coli 50s ribosome bound to compound 46 |
39
|
142
|
6pc6O |
E. coli 50s ribosome bound to compound 47 |
30
|
140
|
6ordRN |
Crystal structure of trna^ ala(ggc) u32-a38 bound to cognate 70s a site |
39
|
142
|
6pcqO |
E. coli 50s ribosome bound to vm2 |
17
|
138
|
6oj2RN |
Crystal structure of trna^ ala(ggc) bound to the near-cognate 70s a-site |
19
|
138
|
6opeRN |
Crystal structure of trna^ ala(ggc) u32-a38 bound to near-cognate 70s a site |
17
|
138
|
6of6RN |
Crystal structure of trna^ ala(ggc) bound to cognate 70s a-site |
32
|
142
|
6lkq0 |
The structural basis for inhibition of ribosomal translocation by viomycin |