HDAC6 regulates cellular viral RNA sensing by deacetylation of RIG-I

HDAC6 通过 RIG-I 去乙酰化来调节细胞病毒 RNA 感知

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作者:Su Jin Choi, Hyun-Cheol Lee, Jae-Hoon Kim, Song Yi Park, Tae-Hwan Kim, Woon-Kyu Lee, Duk-Jae Jang, Ji-Eun Yoon, Young-Il Choi, Seihwan Kim, JinYeul Ma, Chul-Joong Kim, Tso-Pang Yao, Jae U Jung, Joo-Yong Lee, Jong-Soo Lee0

Abstract

RIG-I is a key cytosolic sensor that detects RNA viruses through its C-terminal region and activates the production of antiviral interferons (IFNs) and proinflammatory cytokines. While posttranslational modification has been demonstrated to regulate RIG-I signaling activity, its significance for the sensing of viral RNAs remains unclear. Here, we first show that the RIG-I C-terminal region undergoes deacetylation to regulate its viral RNA-sensing activity and that the HDAC6-mediated deacetylation of RIG-I is critical for viral RNA detection. HDAC6 transiently bound to RIG-I and removed the lysine 909 acetylation in the presence of viral RNAs, promoting RIG-I sensing of viral RNAs. Depletion of HDAC6 expression led to impaired antiviral responses against RNA viruses, but not against DNA viruses. Consequently, HDAC6 knockout mice were highly susceptible to RNA virus infections compared to wild-type mice. These findings underscore the critical role of HDAC6 in the modulation of the RIG-I-mediated antiviral sensing pathway.

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