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USP49 negatively regulates cellular antiviral responses via deconjugating K63-linked ubiquitination of MITA.


ABSTRACT: Mediator of IRF3 activation (MITA, also known as STING and ERIS) is an essential adaptor protein for cytoplasmic DNA-triggered signaling and involved in innate immune responses, autoimmunity and tumorigenesis. The activity of MITA is critically regulated by ubiquitination and deubiquitination. Here, we report that USP49 interacts with and deubiquitinates MITA after HSV-1 infection, thereby turning down cellular antiviral responses. Knockdown or knockout of USP49 potentiated HSV-1-, cytoplasmic DNA- or cGAMP-induced production of type I interferons (IFNs) and proinflammatory cytokines and impairs HSV-1 replication. Consistently, Usp49-/- mice exhibit resistance to lethal HSV-1 infection and attenuated HSV-1 replication compared to Usp49+/+ mice. Mechanistically, USP49 removes K63-linked ubiquitin chains from MITA after HSV-1 infection which inhibits the aggregation of MITA and the subsequent recruitment of TBK1 to the signaling complex. These findings suggest a critical role of USP49 in terminating innate antiviral responses and provide insights into the complex regulatory mechanisms of MITA activation.

SUBMITTER: Ye L 

PROVIDER: S-EPMC6464240 | biostudies-literature | 2019 Apr

REPOSITORIES: biostudies-literature

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USP49 negatively regulates cellular antiviral responses via deconjugating K63-linked ubiquitination of MITA.

Ye Liya L   Zhang Qiang Q   Liuyu Tianzi T   Xu Zhigao Z   Zhang Meng-Xin MX   Luo Min-Hua MH   Zeng Wen-Bo WB   Zhu Qiyun Q   Lin Dandan D   Zhong Bo B  

PLoS pathogens 20190403 4


Mediator of IRF3 activation (MITA, also known as STING and ERIS) is an essential adaptor protein for cytoplasmic DNA-triggered signaling and involved in innate immune responses, autoimmunity and tumorigenesis. The activity of MITA is critically regulated by ubiquitination and deubiquitination. Here, we report that USP49 interacts with and deubiquitinates MITA after HSV-1 infection, thereby turning down cellular antiviral responses. Knockdown or knockout of USP49 potentiated HSV-1-, cytoplasmic D  ...[more]

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