Nonsense-mediated decay controls a negative feedback loop in innate immune sensing

成果类型:
Article
署名作者:
Boudreault, Simon; -Lopez, Yahira Rivera; Ferretti, Max B.; Tracey, Matthew A.; Bonner, James; Jacobs, Bertram L.; Lynch, Kristen W.
署名单位:
University of Pennsylvania; Pennsylvania Medicine; Arizona State University; Arizona State University
刊物名称:
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA
ISSN/ISSBN:
0027-8424; 1091-6490
DOI:
10.1073/pnas.2517478123
发表日期:
2026-01-13
页码:
e2517478123
关键词:
nonsense-mediated decay dsRNA sensing RNaseL double-stranded-rna HUMAN SMG-1 activation viruses upf1 identification degradation expression infection PATHWAY
摘要:
Nonsense-mediated decay (NMD) is an mRNA decay pathway which degrades poten-tial harmful transcripts that contain premature termination codons. However, NMD's importance also extends to the control of isoform abundance under physiological con-ditions. During viral infection, NMD is inhibited through numerous mechanisms; however, NMD has been shown to have both antiviral as well as proviral activities, raising further questions into the role and control of NMD during viral infection. These observations have led us to investigate the potential involvement of NMD in dsRNA sensing as a mechanism that might explain these discrepancies. Using EIF4A2 exon 10B inclusion as an example of AS-NMD isoform accumulating during viral infection, we show that dsRNA sensing inhibits NMD. This effect is correlated with translational blockade and is driven primarily by RNaseL activation, and by PKR in the absence of RNaseL activation. Surprisingly, NMD inhibition limits the induction of IFN-beta as well as interferon-stimulated genes, and this effect is upstream of IRF3 phosphorylation and translocation to the nucleus. NMD inhibition also decreases PKR and RNaseL activation as well as PIC-mediated cell death by decreasing the dsRNA content, suggesting NMD directly controls dsRNA sensing by controlling the dsRNA load. Therefore, inhibition of NMD upon dsRNA sensing provides a negative feedback loop that contributes to shaping the innate immune sensing pathways.
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