The intrinsically disordered SARS-CoV-2 nucleoprotein in dynamic complex with its viral partner nsp3a

Author:

Bessa Luiza Mamigonian1ORCID,Guseva Serafima1ORCID,Camacho-Zarco Aldo R.1ORCID,Salvi Nicola1ORCID,Maurin Damien1,Perez Laura Mariño1ORCID,Botova Maiia1,Malki Anas1ORCID,Nanao Max2,Jensen Malene Ringkjøbing1ORCID,Ruigrok Rob W. H.1ORCID,Blackledge Martin1ORCID

Affiliation:

1. Université Grenoble Alpes, CNRS, CEA, IBS, F-38000 Grenoble, France.

2. Structural Biology Group, European Synchrotron Radiation Facility, F-38000 Grenoble, France.

Abstract

The processes of genome replication and transcription of SARS-CoV-2 represent important targets for viral inhibition. Betacoronaviral nucleoprotein (N) is a highly dynamic cofactor of the replication-transcription complex (RTC), whose function depends on an essential interaction with the amino-terminal ubiquitin-like domain of nsp3 (Ubl1). Here, we describe this complex (dissociation constant - 30 to 200 nM) at atomic resolution. The interaction implicates two linear motifs in the intrinsically disordered linker domain (N3), a hydrophobic helix ( 219 LALLLLDRLNQL 230 ) and a disordered polar strand ( 243 GQTVTKKSAAEAS 255 ), that mutually engage to form a bipartite interaction, folding N3 around Ubl1. This results in substantial collapse in the dimensions of dimeric N, forming a highly compact molecular chaperone, that regulates binding to RNA, suggesting a key role of nsp3 in the association of N to the RTC. The identification of distinct linear motifs that mediate an important interaction between essential viral factors provides future targets for development of innovative strategies against COVID-19.

Publisher

American Association for the Advancement of Science (AAAS)

Subject

Multidisciplinary

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