Key result
SARS-CoV-2 infection inhibits the biogenesis of type I and type III IFN mRNAs at multiple steps, including limiting IRF3 nuclear translocation and blocking nuclear-cytoplasmic transport of IFN mRNAs.
Why the study?
Severe COVID-19 features low serum interferon proteins despite elevated interferon-encoding mRNAs, indicating post-transcriptional inhibition of interferon production.
SARS-CoV-2 evades the host immune response by triggering widespread host mRNA decay and blocking the nuclear export of interferon mRNAs.
May identify IFN pathway targets for antivirals; leaves open translation to human disease models.
The transcriptional induction of interferon (IFN) genes is a key feature of the mammalian antiviral response that limits viral replication and dissemination. A hallmark of severe COVID-19 disease caused by SARS-CoV-2 is the low presence of IFN proteins in patient serum despite elevated levels of IFN-encoding mRNAs, indicative of post-transcriptional inhibition of IFN protein production. Here, we performed single-molecule RNA visualization to examine the expression and localization of host mRNAs during SARS-CoV-2 infection. Our data show that the biogenesis of type I and type III IFN mRNAs is inhibited at multiple steps during SARS-CoV-2 infection. First, translocation of the interferon regulatory factor 3 (IRF3) transcription factor to the nucleus is limited in response to SARS-CoV-2, indicating that SARS-CoV-2 inhibits RLR-MAVS signaling and thus weakens transcriptional induction of IFN genes. Second, we observed that IFN mRNAs primarily localize to the site of transcription in most SARS-CoV-2 infected cells, suggesting that SARS-CoV-2 either inhibits the release of IFN mRNAs from their sites of transcription and/or triggers decay of IFN mRNAs in the nucleus upon exiting the site of transcription. Lastly, nuclear-cytoplasmic transport of IFN mRNAs is inhibited during SARS-CoV-2 infection, which we propose is a consequence of widespread degradation of host cytoplasmic basal mRNAs in the early stages of SARS-CoV-2 replication by the SARS-CoV-2 Nsp1 protein, as well as the host antiviral endoribonuclease, RNase L. Importantly, IFN mRNAs can escape SARS-CoV-2-mediated degradation if they reach the cytoplasm, making rescue of mRNA export a viable means for promoting the immune response to SARS-CoV-2.
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Burke et al. (2021) studied SARS-CoV-2 infection. SARS-CoV-2 infection was evaluated on Expression and localization of host mRNAs (IFN mRNAs). SARS-CoV-2 infection inhibits the biogenesis of type I and type III IFN mRNAs at multiple steps, including limiting IRF3 nuclear translocation and blocking nuclear-cytoplasmic transport of IFN mRNAs.