Endocytosis triggers V-ATPase-SYK-mediated priming of cGAS activation and innate immune response.

Yang, Yu-Lin; Cao, Li-Bo; He, Wen-Rui; Zhong, Li; Guo, Yi; Yang, Qing; Shu, Hong-Bing; Hu, Ming-Ming · Proc Natl Acad Sci U S A · 2022

basic_science · Level V

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Abstract

The current view of nucleic acid-mediated innate immunity is that binding of intracellular sensors to nucleic acids is sufficient for their activation. Here, we report that endocytosis of virus or foreign DNA initiates a priming signal for the DNA sensor cyclic GMP-AMP synthase (cGAS)-mediated innate immune response. Mechanistically, viral infection or foreign DNA transfection triggers recruitment of the spleen tyrosine kinase (SYK) and cGAS to the endosomal vacuolar H<sup>+</sup> pump (V-ATPase), where SYK is activated and then phosphorylates human cGAS<sup>Y214/215</sup> (mouse cGas<sup>Y200/201</sup>) to prime its activation. Upon binding to DNA, the primed cGAS initiates robust cGAMP production and mediator of IRF3 activation/stimulator of interferon genes-dependent innate immune response. Consistently, blocking the V-ATPase-SYK axis impairs DNA virus- and transfected DNA-induced cGAMP production and expression of antiviral genes. Our findings reveal that V-ATPase-SYK-mediated tyrosine phosphorylation of cGAS following endocytosis of virus or other cargos serves as a priming signal for cGAS activation and innate immune response.

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