The SARS-CoV-2 protein NSP2 enhances microRNA-mediated translational repression

Author:

Naeli Parisa1,Zhang Xu2,Snell Patric Harris1ORCID,Chatterjee Susanta1,Kamran Muhammad1,Ladak Reese Jalal2,Orr Nick1,Duchaine Thomas2,Sonenberg Nahum2,Jafarnejad Seyed Mehdi1ORCID

Affiliation:

1. Patrick G. Johnston Centre for Cancer Research, Queen's University Belfast 1 , Belfast, BT9 7AE , UK

2. McGill University 2 Department of Biochemistry and Goodman Cancer Research Centre , , Montreal, H3A 1A3 , Canada

Abstract

ABSTRACT Viruses use microRNAs (miRNAs) to impair the host antiviral response and facilitate viral infection by expressing their own miRNAs or co-opting cellular miRNAs. miRNAs inhibit translation initiation of their target mRNAs by recruiting the GIGYF2–4EHP (or EIF4E2) translation repressor complex to the mRNA 5′-cap structure. We recently reported that the severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2)-encoded non-structural protein 2 (NSP2) interacts with GIGYF2. This interaction is critical for blocking translation of the Ifnb1 mRNA that encodes the cytokine interferon β, and thereby impairs the host antiviral response. However, it is not known whether NSP2 also affects miRNA-mediated silencing. Here, we demonstrate the pervasive augmentation of miRNA-mediated translational repression of cellular mRNAs by NSP2. We show that NSP2 interacts with argonaute 2 (AGO2), the core component of the miRNA-induced silencing complex (miRISC), via GIGYF2 and enhances the translational repression mediated by natural miRNA-binding sites in the 3′ untranslated region of cellular mRNAs. Our data reveal an additional layer of the complex mechanism by which SARS-CoV-2 and likely other coronaviruses manipulate the host gene expression program by co-opting the host miRNA-mediated silencing machinery.

Funder

Biotechnology and Biological Sciences Research Council

Brainwaves NI

Queen's University Belfast

Publisher

The Company of Biologists

Subject

Cell Biology

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