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9Q2O

NediV IRES in complex with Rabbit 80S ribosome with A site Ala-tRNA

This is a non-PDB format compatible entry.
Summary for 9Q2O
Entry DOI10.2210/pdb9q2o/pdb
EMDB information72170
Descriptor60S ribosomal protein L19, 40S ribosomal protein S8, 40S ribosomal protein S9, ... (85 entities in total)
Functional Keywordsribosome, ires, translation, initiation
Biological sourceOryctolagus cuniculus (rabbit)
More
Total number of polymer chains83
Total formula weight3223712.91
Authors
Primary citationDe, S.,Altomare, C.G.,Abaeva, I.S.,Dadhwal, P.,Garg, P.,Acosta-Reyes, F.,Brown, Z.P.,Pestova, T.V.,Hellen, C.U.T.,Frank, J.
Structural Studies of Nedicistrovirus IRES-Driven, Initiation Factor-independent Translation Shed Light on Key Steps of Eukaryotic Translation Elongation.
Biorxiv, 2025
Cited by
PubMed Abstract: We utilized the Nedicistrovirus (NediV) intergenic region (IGR) IRES-mediated, initiation factor-independent translation initiation system and determined high-resolution structures of 80S ribosome complexes with the NediV IRES in various functional states, including binary complexes, aminoacyl-tRNA-bound complexes, and complexes with elongation factor eEF2. In binary complexes, the NediV IRES primarily occupies the ribosomal P site, exhibiting conformational flexibility and engaging the ribosome at multiple interaction sites. Upon translocation, the IRES undergoes structural rearrangements, including destabilization of its PKI domain, facilitating the transition to canonical elongation. Crucially, we captured an eEF2-bound complex, along with an eEF1A-bound post-proofreading complex featuring a mismatched tRNA, the latter representing the first instance of a canonical elongation complex visualized in the presence of a natural, hydrolysable nucleotide and without the addition of any trapping agents. These findings provide a comprehensive structural overview of IGR IRES-mediated translation initiation and its transition to elongation, revealing key mechanistic details of viral translation and proofreading.
PubMed: 41256590
DOI: 10.1101/2025.09.29.679340
PDB entries with the same primary citation
Experimental method
ELECTRON MICROSCOPY (4.1 Å)
Structure validation

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PDB entries from 2026-06-17

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