Structural basis for the multimerization of nonstructural protein nsp9 from SARS-CoV-2

Changhui Zhang(Sichuan University), Yiping Chen(Sichuan University), Li Li(Sichuan University), Yan Yang(Sichuan University), Jun He(Chinese Academy of Sciences), Cheng Chen(Tianjin University), Dan Su(Sichuan University)
Molecular Biomedicine
August 19, 2020
Cited by 30Open Access
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Abstract

Severe acute respiratory syndrome coronavirus-2 (SARS-CoV-2), the causative agent of a potentially fatal disease named coronavirus disease 2019 (COVID-19), has raised significant public health concerns globally. To date, the COVID-19 pandemic has caused millions of people to be infected with SARS-CoV-2 worldwide. It has been known since the 2003 SARS epidemic that coronaviruses (CoVs) have large RNA genomes, the replication of which requires an RNA-dependent RNA replication/transcription complex. CoV nonstructural proteins (Nsps) play pivotal roles in the assembly of this complex and associated enzymatic functions in virus genomic replication. Several smaller nonenzymatic Nsps assist with RNA-dependent RNA polymerase function. In this study, we determined the structure of SARS-CoV-2 nonstructural protein 9 (nsp9), an RNA-binding protein that is essential for CoV replication. Its homotetrameric structure with two stable dimeric interfaces provids a structural basis for understanding the mechanisms of RNA-binding protein self-assembly, which may be essential for the regulation of viral RNA replication and transcription.


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