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人类 NLRP1 和 CARD8 形成不同炎性小体复合物的结构基础。

Structural basis for distinct inflammasome complex assembly by human NLRP1 and CARD8.

机构信息

School of Biological Sciences, Nanyang Technological University, Singapore, 637551, Singapore.

NTU Institute of Structural Biology, Nanyang Technological University, Singapore, 636921, Singapore.

出版信息

Nat Commun. 2021 Jan 8;12(1):188. doi: 10.1038/s41467-020-20319-5.

Abstract

Nod-like receptor (NLR) proteins activate pyroptotic cell death and IL-1 driven inflammation by assembling and activating the inflammasome complex. Closely related sensor proteins NLRP1 and CARD8 undergo unique auto-proteolysis-dependent activation and are implicated in auto-inflammatory diseases; however, their mechanisms of activation are not understood. Here we report the structural basis of how the activating domains (FIIND-CARD) of NLRP1 and CARD8 self-oligomerize to assemble distinct inflammasome complexes. Recombinant FIIND-CARD of NLRP1 forms a two-layered filament, with an inner core of oligomerized CARD surrounded by an outer ring of FIIND. Biochemically, self-assembled NLRP1-CARD filaments are sufficient to drive ASC speck formation in cultured human cells-a process that is greatly enhanced by NLRP1-FIIND which forms oligomers in vitro. The cryo-EM structures of NLRP1-CARD and CARD8-CARD filaments, solved here at 3.7 Å, uncover unique structural features that enable NLRP1 and CARD8 to discriminate between ASC and pro-caspase-1. In summary, our findings provide structural insight into the mechanisms of activation for human NLRP1 and CARD8 and reveal how highly specific signaling can be achieved by heterotypic CARD interactions within the inflammasome complexes.

摘要

核苷酸结合寡聚化结构域样受体 (NLR) 蛋白通过组装和激活炎性小体复合物来激活细胞焦亡和白细胞介素-1 (IL-1) 驱动的炎症。密切相关的传感器蛋白 NLRP1 和 CARD8 经历独特的自身蛋白水解依赖性激活,并与自身炎症性疾病有关;然而,它们的激活机制尚不清楚。在这里,我们报告了 NLRP1 和 CARD8 的激活结构域 (FIIND-CARD) 如何自我寡聚化以组装不同炎性小体复合物的结构基础。NLRP1 的重组 FIIND-CARD 形成双层纤维,内部核心是寡聚化的 CARD,周围是 FIIND 的外环。在生化方面,自组装的 NLRP1-CARD 纤维足以在培养的人类细胞中驱动 ASC 斑点形成——这一过程在体外形成寡聚体的 NLRP1-FIIND 极大地增强。我们在这里以 3.7Å 的分辨率解决了 NLRP1-CARD 和 CARD8-CARD 纤维的冷冻电镜结构,揭示了独特的结构特征,使 NLRP1 和 CARD8 能够区分 ASC 和前胱天蛋白酶-1。总之,我们的研究结果为人类 NLRP1 和 CARD8 的激活机制提供了结构见解,并揭示了异质 CARD 相互作用如何在炎性小体复合物中实现高度特异性信号传递。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f272/7794362/d78ef3c7c1d7/41467_2020_20319_Fig1_HTML.jpg

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