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SARS-CoV-2 hijacks fragile X mental retardation proteins for efficient infection

Garvanska, D.; Alvarado, R. E.; Mundt, F.; Nilsson, E.; Duel, J.; Coscia, F.; Lindqvist, R.; Lokugamage, K.; Johnson, B.; Plante, J. A.; Morris, D. R.; Vu, M. N.; Estes, L.; McLeland, A.; Walker, J.; Crocquet-Valdes, P.; Lopez-Mendez, B.; Plante, K.; Walker, D. H.; Weisser, M. B.; Overby, A. K.; Mann, M.; Menachery, V. D.; Nilsson, J.

2023-09-01 microbiology
10.1101/2023.09.01.555899 bioRxiv
Show abstract

Viruses 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 and FXR1-2). SARS-CoV-2 NSP3 mutant viruses preventing FMRP binding have attenuated replication in vitro and have delayed disease onset in vivo. 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 for efficient infection and provides molecular insight to the possible underlying molecular defects in fragile X syndrome.

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