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Apoptotic Caspases Prevent the Induction of Type I Interferons by Mitochondrial DNA

机译:凋亡的胱天蛋白酶阻止线粒体DNA诱导I型干扰素

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The mechanism by which cells undergo death determines whether dying cells trigger inflammatory responses or remain immunologically silent. Mitochondria play a central role in the induction of cell death, as well as in immune signaling pathways. Here, we identify a mechanism by which mitochondria and downstream proapoptotic caspases regulate the activation of antiviral immunity. In the absence of active caspases, mitochondrial outer membrane permeabilization by Bax and Bak results in the expression of type I interferons (IFNs). This induction is mediated by mitochondrial DNA-dependent activation of the cGAS/STING pathway and results in the establishment of a potent state of viral resistance. Our results show that mitochondria have the capacity to simultaneously expose a cell-intrinsic inducer of the IFN response and to inactivate this response in a caspase-dependent manner. This mechanism provides a dual control, which determines whether mitochondria initiate an immunologically silent or a proinflammatory type of cell death.
机译:细胞死亡的机制决定了垂死的细胞是触发炎症反应还是保持免疫沉默。线粒体在诱导细胞死亡以及免疫信号通路中起着核心作用。在这里,我们确定了线粒体和下游促凋亡的半胱氨酸蛋白酶调节抗病毒免疫激活的机制。在没有活性胱天蛋白酶的情况下,Bax和Bak引起的线粒体外膜通透性导致I型干扰素(IFN)的表达。这种诱导作用由cGAS / STING途径的线粒体DNA依赖性激活介导,并导致建立有效的病毒抗性状态。我们的结果表明,线粒体具有同时暴露细胞内源性IFN反应诱导物和以caspase依赖性方式灭活该反应的能力。该机制提供了双重控制,可确定线粒体是引发免疫沉默还是促炎性细胞死亡。

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