4.5 Article

The microRNA miR-485 targets host and influenza virus transcripts to regulate antiviral immunity and restrict viral replication

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SCIENCE SIGNALING
卷 8, 期 406, 页码 -

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AMER ASSOC ADVANCEMENT SCIENCE
DOI: 10.1126/scisignal.aab3183

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资金

  1. IISER Bhopal institutional fellowship
  2. CSIR India Senior research fellowship
  3. Department of Science and Technology (DST), India
  4. DST [SR/S2/RJN-55/2009, BT/PR6009/GBD/27/382/2012]
  5. Department of Biotechnology, Government of India
  6. IISER Bhopal-IGM Hokkaido University Grant for General Joint Research Program of the Institute for Genetic Medicine, Hokkaido University
  7. Intramural Research Grant of IISER, Bhopal, India
  8. BBSRC [BB/L004666/1] Funding Source: UKRI
  9. Biotechnology and Biological Sciences Research Council [BB/L004666/1] Funding Source: researchfish

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MicroRNAs (miRNAs) are small noncoding RNAs that are responsible for dynamic changes in gene expression, and some regulate innate antiviral responses. Retinoic acid-inducible gene I (RIG-I) is a cytosolic sensor of viralRNA; RIG-I activation induces an antiviral immune response. Wefound that miR-485 of the host was produced in response to viral infection and targeted RIG-ImRNA for degradation, which led to suppression of the antiviral response and enhanced viral replication. Thus, inhibition of the expression of mir-485 markedly reduced the replication of Newcastle disease virus (NDV) and the H5N1 strain of influenza virus in mammalian cells. Unexpectedly, miR-485 also bound to the H5N1 gene PB1 (which encodes an RNA polymerase required for viral replication) in a sequence-specific manner, thereby inhibiting replication of the H5N1 virus. Furthermore, miR-485 exhibited bispecificity, targeting RIG-I in cells with a low abundance of H5N1 virus and targeting PB1 in cells with increased amounts of the H5N1 virus. These findings highlight the dual role of miR-485 in preventing spurious activation of antiviral signaling and restricting influenza virus infection.

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