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XRN1 supplies free nucleotides to feed alphavirus replication

Ruscica, V.; Iselin, L.; Hull, R.; Embarc-Buh, A.; Narayanan, S.; Palmalux, N.; Raut, N.; Gu, Q.; Chen, H.; Noerenberg, M.; de Laurent, Z. R.; Joseph, J.; Noble, M.; Igreja, C.; Robertson, D. L.; Hughes, J.; Mohammed, S.; Pelechano, V.; Davis, I.; Castello, A.

2024-12-09 biochemistry
10.1101/2024.12.09.625895 bioRxiv
Show abstract

Several RNA viruses induce widespread degradation of cellular mRNAs upon infection; however, the biological significance and mechanistic details of this phenomenon remain unknown. Here, we make use of a model alphavirus, Sindbis virus (SINV), to fill this knowledge gap. We found that SINV triggers cellular RNA decay through the exonuclease XRN1 and the 5-to-3 degradation machinery (5-3DM). These proteins accumulate at viral replication organelles (VROs) and interact with the non-structural protein 1 (nsP1), bringing mRNA degradation into proximity with vRNA synthesis. Our data suggest that monophosphate nucleotides released by cellular RNA decay are recycled through the salvage pathway to feed viral replications. Our work thus reveals a fundamental connection between cellular mRNA degradation and viral replication via nucleotides repurposing. Research highlightsO_LI5-3 RNA decay is essential for the replication of a wide range of viruses. C_LIO_LIXRN1 directly interacts with transcripts which are degraded during infection. C_LIO_LIRNA decay factors and salvage pathway members localise to viral factories. C_LIO_LISupplying nucleosides to several 5-3DM deficient cells facilitates SINV infection. C_LI

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