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Investigating molecular mechanisms of 2A-stimulated ribosomal pausing and frameshifting in Theilovirus

Authors :
Sawsan Napthine
Neva Caliskan
Anuja Kibe
Stephen C. Graham
Katherine A. Brown
Chris H. Hill
Andrew E. Firth
Georgia M. Cook
Ian Brierley
Hill, Chris H [0000-0001-7037-0611]
Cook, Georgia M [0000-0003-1577-735X]
Caliskan, Neva [0000-0003-0435-4757]
Graham, Stephen C [0000-0003-4547-4034]
Apollo - University of Cambridge Repository
Hill, Christopher [0000-0001-7037-0611]
Cook, Georgia [0000-0003-1577-735X]
Napthine, Sawsan [0000-0001-7404-8494]
Brown, Katherine [0000-0002-8400-6922]
Firth, Andrew [0000-0002-7986-9520]
Graham, Stephen [0000-0003-4547-4034]
Brierley, Ian [0000-0003-3965-4370]
Source :
Nucleic Acids Research, bioRxiv
Publication Year :
2021

Abstract

The 2A protein of Theiler’s murine encephalomyelitis virus (TMEV) acts as a switch to stimulate programmed −1 ribosomal frameshifting (PRF) during infection. Here we present the X-ray crystal structure of TMEV 2A and define how it recognises the stimulatory RNA element. We demonstrate a critical role for bases upstream of the originally predicted stem-loop, providing evidence for a pseudoknot-like conformation and suggesting that the recognition of this pseudoknot by beta-shell proteins is a conserved feature in cardioviruses. Through examination of PRF in TMEV-infected cells by ribosome profiling, we identify a series of ribosomal pauses around the site of PRF induced by the 2A-pseudoknot complex. Careful normalisation of ribosomal profiling data with a 2A knockout virus facilitated the identification, through disome analysis, of ribosome stacking at the TMEV frameshifting signal. These experiments provide unparalleled detail of the molecular mechanisms underpinningTheilovirusprotein-stimulated frameshifting.

Details

Language :
English
ISSN :
03051048
Database :
OpenAIRE
Journal :
Nucleic Acids Research, bioRxiv
Accession number :
edsair.doi.dedup.....5db27ac53bdb989daee537874cf6b0c8