布鲁顿酪氨酸激酶使DDX41磷酸化并激活其与双链DNA和STING的结合,从而启动1型干扰素反应。
Bruton's tyrosine kinase phosphorylates DDX41 and activates its binding of dsDNA and STING to initiate type 1 interferon response.
作者信息
Lee Koon-Guan, Kim Susana Soo-Yeon, Kui Lin, Voon Dominic Chih-Cheng, Mauduit Marjorie, Bist Pradeep, Bi Xuezhi, Pereira Natasha Ann, Liu Chengcheng, Sukumaran Bindu, Rénia Laurent, Ito Yoshiaki, Lam Kong-Peng
机构信息
Bioprocessing Technology Institute, Agency for Science, Technology and Research, Singapore 138668, Singapore.
Cancer Biology Program, Cancer Science Institute, National University of Singapore, Singapore 117599, Singapore.
出版信息
Cell Rep. 2015 Feb 24;10(7):1055-65. doi: 10.1016/j.celrep.2015.01.039. Epub 2015 Feb 19.
The innate immune system senses cytosolic dsDNA and bacterial cyclic dinucleotides and initiates signaling via the adaptor STING to induce type 1 interferon (IFN) response. We demonstrate here that BTK-deficient cells have impaired IFN-β production and TBK1/IRF3 activation when stimulated with agonists or infected with pathogens that activate STING signaling. BTK interacts with STING and DDX41 helicase. The kinase and SH3/SH2 interaction domains of BTK bind, respectively, the DEAD-box domain of DDX41 and transmembrane region of STING. BTK phosphorylates DDX41, and its kinase activities are critical for STING-mediated IFN-β production. We show that Tyr364 and Tyr414 of DDX41 are critical for its recognition of AT-rich DNA and binding to STING, and tandem mass spectrometry identifies Tyr414 as the BTK phosphorylation site. Modeling studies further indicate that phospho-Tyr414 strengthens DDX41's interaction with STING. Hence, BTK plays a critical role in the activation of DDX41 helicase and STING signaling.
天然免疫系统可感知胞质双链DNA和细菌环二核苷酸,并通过接头蛋白STING启动信号传导,以诱导I型干扰素(IFN)反应。我们在此证明,在用激动剂刺激或感染激活STING信号传导的病原体时,BTK缺陷细胞的IFN-β产生以及TBK1/IRF3激活受损。BTK与STING和DDX41解旋酶相互作用。BTK的激酶以及SH3/SH2相互作用结构域分别与DDX41的DEAD-box结构域和STING的跨膜区域结合。BTK使DDX41磷酸化,其激酶活性对于STING介导的IFN-β产生至关重要。我们表明,DDX41的Tyr364和Tyr414对于其识别富含AT的DNA以及与STING结合至关重要,串联质谱鉴定出Tyr414为BTK磷酸化位点。建模研究进一步表明,磷酸化的Tyr414增强了DDX41与STING的相互作用。因此,BTK在DDX41解旋酶激活和STING信号传导中起关键作用。