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The US3 Kinase of Herpes Simplex Virus Phosphorylates the RNA Sensor RIG-I To Suppress Innate Immunity

  • Michiel van Gent
  • , Jessica J. Chiang
  • , Santoshi Muppala
  • , Cindy Chiang
  • , Walid Azab
  • , Lisa Kattenhorn
  • , David M. Knipe
  • , Nikolaus Osterrieder
  • , Michaela U. Gack*
  • *Corresponding author for this work

Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

Abstract

Recent studies have demonstrated that the signaling activity of the cytosolic pathogen sensor retinoic acid-inducible gene-I (RIG-I) is modulated by a variety of posttranslational modifications (PTMs) to fine-tune the antiviral type I interferon (IFN) response. Whereas K63-linked ubiquitination of the RIG-I caspase activation and recruitment domains (CARDs) catalyzed by TRIM25 or other E3 ligases activates RIG-I, phosphorylation of RIG-I at S8 and T170 represses RIG-I signal transduction by preventing the TRIM25-RIG-I interaction and subsequent RIG-I ubiquitination. While strategies to suppress RIG-I signaling by interfering with its K63-polyubiquitin-dependent activation have been identified for several viruses, evasion mechanisms that directly promote RIG-I phosphorylation to escape antiviral immunity are unknown. Here, we show that the serine/threonine (Ser/Thr) kinase US3 of herpes simplex virus 1 (HSV-1) binds to RIG-I and phosphorylates RIG-I specifically at S8. US3-mediated phosphorylation suppressed TRIM25-mediated RIG-I ubiquitination, RIG-I-MAVS binding, and type I IFN induction. We constructed a mutant HSV-1 encoding a catalytically-inactive US3 protein (K220A) and found that, in contrast to the parental virus, the US3 mutant HSV-1 was unable to phosphorylate RIG-I at S8 and elicited higher levels of type I IFNs, IFN-stimulated genes (ISGs), and proinflammatory cytokines in a RIG-I-dependent manner. Finally, we show that this RIG-I evasion mechanism is conserved among the alphaherpesvirus US3 kinase family. Collectively, our study reveals a novel immune evasion mechanism of herpesviruses in which their US3 kinases phosphorylate the sensor RIG-I to keep it in the signaling-repressed state.
Original languageEnglish
Article numbere01510-21
JournalJournal of Virology
Volume96
Issue number4
Online published22 Dec 2021
DOIs
Publication statusPublished - Feb 2022
Externally publishedYes

Research Keywords

  • RIG-I
  • herpes simplex virus
  • innate immunity
  • interferons
  • viral immune evasion
  • viral kinases
  • U(S)3 PROTEIN-KINASE
  • PAPAIN-LIKE PROTEASE
  • UBIQUITIN LIGASE
  • PHOSPHATASE PP1
  • LAMIN A/C
  • HOST
  • RECOGNITION
  • ACTIVATION
  • DNA
  • LOCALIZATION

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