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10.1038/ncb3496

http://scihub22266oqcxt.onion/10.1038/ncb3496
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C5398908!5398908!28346439
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suck abstract from ncbi


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pmid28346439      Nat+Cell+Biol 2017 ; 19 (4): 362-74
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  • Hippo signaling governs cytosolic nucleic acid sensing through YAP/TAZ-mediated TBK1 blockade #MMPMID28346439
  • Zhang Q; Meng F; Chen S; Plouffe SW; Wu S; Liu S; Li X; Zhou R; Wang J; Zhao B; Liu J; Qin J; Zou J; Feng XH; Guan KL; Xu P
  • Nat Cell Biol 2017[Apr]; 19 (4): 362-74 PMID28346439show ga
  • The Hippo pathway senses cellular conditions and regulates YAP/TAZ to control cellular and tissue homeostasis, while TBK1 is central for cytosolic nucleic acid sensing and antiviral defense. The correlation between cellular nutrient/physical status and host antiviral defense is interesting but not well understood. Here we find that YAP/TAZ act as natural inhibitors of TBK1 and are vital for antiviral physiology. Independent of transcriptional regulation and through transactivation domain, YAP/TAZ associate directly with TBK1 and abolish virus-induced TBK1 activation, by preventing TBK1 K63-linked ubiquitination and adaptors/substrates binding. Accordingly, YAP/TAZ deletion/depletion or cellular conditions inactivating YAP/TAZ through Lats1/2 kinases relieve TBK1 suppression and boost antiviral responses, whereas expression of the transcriptionally inactive YAP dampens cytosolic RNA/DNA sensing and weakens the antiviral defense in cells and zebrafish. Thus, we describe a function of YAP/TAZ and the Hippo pathway in innate immunity, by linking cellular nutrient/physical status to antiviral host defense.
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