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IRTKS negatively regulates antiviral immunity through PCBP2 sumoylation-mediated MAVS degradation.


ABSTRACT: RNA virus infection is recognized by the RIG-I family of receptors that activate the mitochondrial adaptor MAVS, leading to the clearance of viruses. Antiviral signalling activation requires strict modulation to avoid damage to the host from exacerbated inflammation. Insulin receptor tyrosine kinase substrate (IRTKS) participates in actin bundling and insulin signalling and its deficiency causes insulin resistance. However, whether IRTKS is involved in the regulation of innate immunity remains elusive. Here we show that IRTKS deficiency causes enhanced innate immune responses against RNA viruses. IRTKS-mediated suppression of antiviral responses depends on the RIG-I-MAVS signalling pathway. IRTKS recruits the E2 ligase Ubc9 to sumoylate PCBP2 in the nucleus, which causes its cytoplasmic translocation during viral infection. The sumoylated PCBP2 associates with MAVS to initiate its degradation, leading to downregulation of antiviral responses. Thus, IRTKS functions as a negative modulator of excessive inflammation.

SUBMITTER: Xia P 

PROVIDER: S-EPMC4569712 | biostudies-literature | 2015 Sep

REPOSITORIES: biostudies-literature

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IRTKS negatively regulates antiviral immunity through PCBP2 sumoylation-mediated MAVS degradation.

Xia Pengyan P   Wang Shuo S   Xiong Zhen Z   Ye Buqing B   Huang Li-Yu LY   Han Ze-Guang ZG   Fan Zusen Z  

Nature communications 20150908


RNA virus infection is recognized by the RIG-I family of receptors that activate the mitochondrial adaptor MAVS, leading to the clearance of viruses. Antiviral signalling activation requires strict modulation to avoid damage to the host from exacerbated inflammation. Insulin receptor tyrosine kinase substrate (IRTKS) participates in actin bundling and insulin signalling and its deficiency causes insulin resistance. However, whether IRTKS is involved in the regulation of innate immunity remains e  ...[more]

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