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CryoEM and AI reveal a structure of SARS-CoV-2 Nsp2, a multifunctional protein involved in key host processes.

Authors :
Gupta M
Azumaya CM
Moritz M
Pourmal S
Diallo A
Merz GE
Jang G
Bouhaddou M
Fossati A
Brilot AF
Diwanji D
Hernandez E
Herrera N
Kratochvil HT
Lam VL
Li F
Li Y
Nguyen HC
Nowotny C
Owens TW
Peters JK
Rizo AN
Schulze-Gahmen U
Smith AM
Young ID
Yu Z
Asarnow D
Billesbølle C
Campbell MG
Chen J
Chen KH
Chio US
Dickinson MS
Doan L
Jin M
Kim K
Li J
Li YL
Linossi E
Liu Y
Lo M
Lopez J
Lopez KE
Mancino A
Moss FR 3rd
Paul MD
Pawar KI
Pelin A
Pospiech TH Jr
Puchades C
Remesh SG
Safari M
Schaefer K
Sun M
Tabios MC
Thwin AC
Titus EW
Trenker R
Tse E
Tsui TKM
Wang F
Zhang K
Zhang Y
Zhao J
Zhou F
Zhou Y
Zuliani-Alvarez L
Agard DA
Cheng Y
Fraser JS
Jura N
Kortemme T
Manglik A
Southworth DR
Stroud RM
Swaney DL
Krogan NJ
Frost A
Rosenberg OS
Verba KA
Source :
Research square [Res Sq] 2021 May 19. Date of Electronic Publication: 2021 May 19.
Publication Year :
2021

Abstract

The SARS-CoV-2 protein Nsp2 has been implicated in a wide range of viral processes, but its exact functions, and the structural basis of those functions, remain unknown. Here, we report an atomic model for full-length Nsp2 obtained by combining cryo-electron microscopy with deep learning-based structure prediction from AlphaFold2. The resulting structure reveals a highly-conserved zinc ion-binding site, suggesting a role for Nsp2 in RNA binding. Mapping emerging mutations from variants of SARS-CoV-2 on the resulting structure shows potential host-Nsp2 interaction regions. Using structural analysis together with affinity tagged purification mass spectrometry experiments, we identify Nsp2 mutants that are unable to interact with the actin-nucleation-promoting WASH protein complex or with GIGYF2, an inhibitor of translation initiation and modulator of ribosome-associated quality control. Our work suggests a potential role of Nsp2 in linking viral transcription within the viral replication-transcription complexes (RTC) to the translation initiation of the viral message. Collectively, the structure reported here, combined with mutant interaction mapping, provides a foundation for functional studies of this evolutionary conserved coronavirus protein and may assist future drug design.

Details

Language :
English
ISSN :
2693-5015
Database :
MEDLINE
Journal :
Research square
Accession number :
34031651
Full Text :
https://doi.org/10.21203/rs.3.rs-515215/v1