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Molecular Mechanism for p202-Mediated Specific Inhibition of AIM2 Inflammasome Activation

机译:p202介导的AIM2炎症小体激活特异性抑制的分子机制

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Mouse p202 containing two hemopoietic expression, interferon inducibility, nuclear localization (HIN) domains antagonizes AIM2 inflammasome signaling and potentially modifies lupus susceptibility. We found that only HIN1 of p202 binds double-stranded DNA (dsDNA), while HIN2 forms a homotetramer. Crystal structures of HIN1 revealed that dsDNA is bound on face opposite the site used in AIM2 and IFI16. The structure of HIN2 revealed a dimer of dimers, the face analogous to the HIN1 dsDNA binding site being a dimerization interface. Electron microscopy imaging showed that HIN1 is flexibly linked to HIN2 in p202, and tetramerization provided enhanced avidity for dsDNA. Surprisingly, HIN2 of p202 interacts with the AIM HIN domain. We propose that this results in a spatial separation of the AIM2 pyrin domains, and indeed p202 prevented the dsDNA-dependent clustering of apoptosis-associated speck-like protein containing caspase recruitment domain (ASC) and AIM2 inflammasome activation. We hypothesize that while p202 was evolutionarily selected to limit AIM2-mediated inflammation in some mouse strains, the same mechanism contributes to increased interferon production and lupus susceptibility.
机译:包含两个造血表达,干扰素诱导性,核定位(HIN)域的小鼠p202拮抗AIM2炎性体信号转导,并可能改变狼疮易感性。我们发现,只有p202的HIN1结合双链DNA(dsDNA),而HIN2形成同型四聚体。 HIN1的晶体结构表明,dsDNA结合在AIM2和IFI16中所用位点的相反面上。 HIN2的结构揭示了一个二聚体的二聚体,类似于HIN1 dsDNA结合位点的面孔是一个二聚化界面。电子显微镜成像显示HIN1与p202中的HIN2灵活连接,四聚化为dsDNA提供了增强的亲和力。令人惊讶地,p202的HIN2与AIM HIN结构域相互作用。我们建议,这导致AIM2吡啶域的空间分离,并且确实p202阻止了dsDNA依赖的凋亡相关斑点样蛋白的半胱天冬酶募集结构域(ASC)和AIM2炎性体激活的dsDNA依赖性簇。我们假设虽然p202被进化选择来限制AIM2介导的某些小鼠品系的炎症,但相同的机制有助于增加干扰素的产生和狼疮的易感性。

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