4V6X |
5.0 |
Structure of the human 80S ribosome |
5A2Q |
3.9 |
Structure of the HCV IRES bound to the human ribosome |
5AJ0 |
3.5 |
Cryo electron microscopy of actively translating human polysomes (POST state). |
5FLX |
3.9 |
Mammalian 40S HCV-IRES complex |
5LKS |
3.6 |
Structure-function insights reveal the human ribosome as a cancer target for antibiotics |
5OA3 |
4.2 |
Human 40S-eIF2D-re-initiation complex |
5T2C |
3.6 |
CryoEM structure of the human ribosome at 3.6 Angstrom resolution |
5VYC |
6.0 |
Crystal structure of the human 40S ribosomal subunit in complex with DENR-MCT-1. |
6FEC |
6.3 |
Human cap-dependent 48S pre-initiation complex |
6G18 |
3.6 |
Cryo-EM structure of a late human pre-40S ribosomal subunit - State C |
6G51 |
4.1 |
Cryo-EM structure of a late human pre-40S ribosomal subunit - State D |
6G53 |
4.5 |
Cryo-EM structure of a late human pre-40S ribosomal subunit - State E |
6G5H |
3.6 |
Cryo-EM structure of a late human pre-40S ribosomal subunit - Mature |
6G5I |
3.5 |
Cryo-EM structure of a late human pre-40S ribosomal subunit - State R |
6IP5 |
3.9 |
Cryo-EM structure of the CMV-stalled human 80S ribosome (Structure ii) |
6IP6 |
4.5 |
Cryo-EM structure of the CMV-stalled human 80S ribosome with HCV IRES (Structure iii) |
6IP8 |
3.9 |
Cryo-EM structure of the HCV IRES dependently initiated CMV-stalled 80S ribosome (Structure iv) |
6OLE |
3.1 |
Human ribosome nascent chain complex (CDH1-RNC) stalled by a drug-like molecule with AP and PE tRNAs |
6OLF |
3.9 |
Human ribosome nascent chain complex (CDH1-RNC) stalled by a drug-like molecule with AA and PE tRNAs |
6OLG |
3.4 |
Human ribosome nascent chain complex stalled by a drug-like small molecule (CDH1_RNC with PP tRNA) |
6OLI |
3.5 |
Structure of human ribosome nascent chain complex selectively stalled by a drug-like small molecule (USO1-RNC) |
6OLZ |
3.9 |
Human ribosome nascent chain complex (PCSK9-RNC) stalled by a drug-like molecule with PP tRNA |
6OM0 |
3.1 |
Human ribosome nascent chain complex (PCSK9-RNC) stalled by a drug-like molecule with AP and PE tRNAs |
6OM7 |
3.7 |
Human ribosome nascent chain complex (PCSK9-RNC) stalled by a drug-like small molecule with AA and PE tRNAs |
6QZP |
2.9 |
High-resolution cryo-EM structure of the human 80S ribosome |
6XA1 |
2.8 |
Structure of a drug-like compound stalled human translation termination complex |
6Y0G |
3.2 |
Structure of human ribosome in classical-PRE state |
6Y57 |
3.5 |
Structure of human ribosome in hybrid-PRE state |
6YBS |
3.1 |
Structure of a human 48S translational initiation complex - head |
6Z6L |
3.0 |
Cryo-EM structure of human CCDC124 bound to 80S ribosomes |
6Z6M |
3.1 |
Cryo-EM structure of human 80S ribosomes bound to EBP1, eEF2 and SERBP1 |
6Z6N |
2.9 |
Cryo-EM structure of human EBP1-80S ribosomes (focus on EBP1) |
6ZLW |
2.6 |
SARS-CoV-2 Nsp1 bound to the human 40S ribosomal subunit |
6ZM7 |
2.7 |
SARS-CoV-2 Nsp1 bound to the human CCDC124-80S-EBP1 ribosome complex |
6ZME |
3.0 |
SARS-CoV-2 Nsp1 bound to the human CCDC124-80S-eERF1 ribosome complex |
6ZMI |
2.6 |
SARS-CoV-2 Nsp1 bound to the human LYAR-80S ribosome complex |
6ZMO |
3.1 |
SARS-CoV-2 Nsp1 bound to the human LYAR-80S-eEF1a ribosome complex |
6ZMT |
3.0 |
SARS-CoV-2 Nsp1 bound to a pre-40S-like ribosome complex |
6ZMW |
3.7 |
Structure of a human 48S translational initiation complex |
6ZN5 |
3.2 |
SARS-CoV-2 Nsp1 bound to a pre-40S-like ribosome complex - state 2 |
6ZOJ |
2.8 |
SARS-CoV-2-Nsp1-40S complex, composite map |
6ZOL |
2.8 |
SARS-CoV-2-Nsp1-40S complex, focused on head |
6ZON |
3.0 |
SARS-CoV-2 Nsp1 bound to a human 43S preinitiation ribosome complex - state 1 |
6ZP4 |
2.9 |
SARS-CoV-2 Nsp1 bound to a human 43S preinitiation ribosome complex - state 2 |
6ZUO |
3.1 |
Human RIO1(kd)-StHA late pre-40S particle, structural state A (pre 18S rRNA cleavage) |
6ZV6 |
2.9 |
Human RIO1(kd)-StHA late pre-40S particle, structural state B (post 18S rRNA cleavage) |
6ZVH |
2.9 |
EDF1-ribosome complex |
6ZVJ |
3.8 |
Structure of a human ABCE1-bound 43S pre-initiation complex - State II |
6ZXD |
3.2 |
Cryo-EM structure of a late human pre-40S ribosomal subunit - State F1 |
6ZXE |
3.0 |
Cryo-EM structure of a late human pre-40S ribosomal subunit - State F2 |
6ZXF |
3.7 |
Cryo-EM structure of a late human pre-40S ribosomal subunit - State G |
6ZXG |
2.6 |
Cryo-EM structure of a late human pre-40S ribosomal subunit - State H1 |
6ZXH |
2.7 |
Cryo-EM structure of a late human pre-40S ribosomal subunit - State H2 |
7A09 |
3.5 |
Structure of a human ABCE1-bound 43S pre-initiation complex - State III |
7K5I |
2.9 |
SARS-COV-2 nsp1 in complex with human 40S ribosome |
7MQ8 |
3.6 |
Cryo-EM structure of the human SSU processome, state pre-A1 |
7MQ9 |
3.87 |
Cryo-EM structure of the human SSU processome, state pre-A1* |
7MQA |
2.7 |
Cryo-EM structure of the human SSU processome, state post-A1 |
7QP6 |
4.7 |
Structure of the human 48S initiation complex in open state (h48S AUG open) |
7QP7 |
3.7 |
Structure of the human 48S initiation complex in closed state (h48S AUG closed) |
7R4X |
2.15 |
Cryo-EM reconstruction of the human 40S ribosomal subunit - Full map |
7TQL |
3.2 |
CryoEM structure of the human 40S small ribosomal subunit in complex with translation initiation factors eIF1A and eIF5B. |
7WTT |
3.1 |
Cryo-EM structure of a human pre-40S ribosomal subunit - State RRP12-A1 (with CK1) |
7WTU |
3.0 |
Cryo-EM structure of a human pre-40S ribosomal subunit - State RRP12-A1 (without CK1) |
7WTV |
3.5 |
Cryo-EM structure of a human pre-40S ribosomal subunit - State RRP12-A2 |
7WTW |
3.2 |
Cryo-EM structure of a human pre-40S ribosomal subunit - State RRP12-A3 |
7WTX |
3.1 |
Cryo-EM structure of a human pre-40S ribosomal subunit - State RRP12-B1 |
7WTZ |
3.0 |
Cryo-EM structure of a human pre-40S ribosomal subunit - State RRP12-B2 |
7WU0 |
3.3 |
Cryo-EM structure of a human pre-40S ribosomal subunit - State RRP12-B3 |