Cleavage of 14-3-3ε by the enteroviral 3C protease dampens RIG-I-mediated antiviral signaling

Daniel D T Andrews1,2, Marli Vlok1,2, Dorssa Akbari Bani1,2

  • 1Department of Biochemistry and Molecular Biology, University of British Columbia , Vancouver, British Columbia, Canada.

Journal of Virology
|August 9, 2023
PubMed

Insights

Enteroviruses cleave the host protein 14-3-3ε, a key player in the retinoic acid-inducible gene I (RIG-I) antiviral pathway. This cleavage disrupts RIG-I signaling, allowing viruses to evade the host immune response and promote infection.

Area of Science:

  • Virology and Immunology
  • Molecular Cell Biology

Background:

  • Host innate immunity relies on sensors like RIG-I to detect viral RNA and initiate antiviral responses.
  • The RIG-I signaling pathway involves mitochondrial antiviral-signaling protein (MAVS) and the 14-3-3ε protein, crucial for RIG-I function.
  • Viruses employ diverse strategies to counteract host antiviral defenses, including targeting key signaling proteins.

Purpose of the Study:

  • To elucidate the role of 14-3-3ε in the RIG-I antiviral signaling pathway.
  • To investigate whether enteroviruses target 14-3-3ε and how this impacts antiviral signaling.
  • To understand the mechanism by which viral proteases interact with and modify 14-3-3ε.

Main Methods:

  • Biochemical assays to identify 14-3-3ε as a substrate for poliovirus and coxsackievirus B3 (CVB3) 3C proteases (3Cpro).
  • Analysis of 14-3-3ε cleavage products and their functional consequences on RIG-I signaling.
  • Co-immunoprecipitation assays to assess protein interactions and cellular assays to evaluate viral infection rates.

Main Results:

  • 14-3-3ε is directly cleaved by enteroviral 3Cpro at Q236↓G237, generating N- and C-terminal fragments.
  • The N-terminal fragment of 14-3-3ε fails to interact with RIG-I or facilitate its mitochondrial translocation, impairing antiviral signaling.
  • Overexpression of the N-terminal fragment enhances CVB3 infection, demonstrating its role in viral evasion.

Conclusions:

  • Enteroviruses strategically cleave 14-3-3ε to disrupt the RIG-I translocon complex and antagonize host antiviral immunity.
  • This cleavage event inhibits type I interferon production and promotes viral replication.
  • The findings reveal a novel viral immune evasion mechanism involving the targeted disruption of host antiviral signaling pathways.

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