The NSP3 protein of SARS-CoV-2 binds fragile X mental retardation proteins to disrupt UBAP2L interactions

Author:

Garvanska Dimitriya H,Alvarado R EliasORCID,Mundt Filip Oskar,Lindqvist Richard,Duel Josephine Kerzel,Coscia FabianORCID,Nilsson EmmaORCID,Lokugamage Kumari,Johnson Bryan A,Plante Jessica A,Morris Dorothea R,Vu Michelle N,Estes Leah K,McLeland Alyssa M,Walker Jordyn,Crocquet-Valdes Patricia AORCID,Mendez Blanca LopezORCID,Plante Kenneth S,Walker David H,Weisser Melanie Bianca,Överby Anna KORCID,Mann Matthias,Menachery Vineet D,Nilsson JakobORCID

Abstract

AbstractViruses interact with numerous host factors to facilitate viral replication and to dampen antiviral defense mechanisms. We currently have a limited mechanistic understanding of how SARS-CoV-2 binds host factors and the functional role of these interactions. Here, we uncover a novel interaction between the viral NSP3 protein and the fragile X mental retardation proteins (FMRPs: FMR1, FXR1-2). SARS-CoV-2 NSP3 mutant viruses preventing FMRP binding have attenuated replication in vitro and reduced levels of viral antigen in lungs during the early stages of infection. We show that a unique peptide motif in NSP3 binds directly to the two central KH domains of FMRPs and that this interaction is disrupted by the I304N mutation found in a patient with fragile X syndrome. NSP3 binding to FMRPs disrupts their interaction with the stress granule component UBAP2L through direct competition with a peptide motif in UBAP2L to prevent FMRP incorporation into stress granules. Collectively, our results provide novel insight into how SARS-CoV-2 hijacks host cell proteins and provides molecular insight into the possible underlying molecular defects in fragile X syndrome.

Funder

Novo Nordisk Fonden

HHS | NIH | NIAID | Division of Microbiology and Infectious Diseases, National Institute of Allergy and Infectious Diseases

Sygeforsikring Danmark

Independent Research Fund Denmark

Swedish Research Council

STARs Award provided by the University of Texas

National Microscopy Infrastructure

Publisher

Springer Science and Business Media LLC

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