NLRP12 与 NLRP3 相互作用,阻止人类 NLRP3 炎症小体的激活。

IF 6.7 1区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Science Signaling Pub Date : 2024-01-23 DOI:10.1126/scisignal.abg8145
Jared R. Coombs, Alina Zamoshnikova, Caroline L. Holley, Madhavi P. Maddugoda, Daniel Eng Thiam Teo, Camille Chauvin, Lionel F Poulin, Nazarii Vitak, Connie M. Ross, Manasa Mellacheruvu, Rebecca C. Coll, Leonhard X. Heinz, Sabrina S. Burgener, Stefan Emming, Mathias Chamaillard, Dave Boucher, Kate Schroder
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引用次数: 0

摘要

炎症小体是一种多蛋白复合物,它能驱动炎症,并有助于抵御病原体的保护性免疫和自身炎症性疾病的免疫病理学。当炎症小体支架蛋白感应到激活信号并与炎症小体适配蛋白 ASC 形成信号平台时,炎症小体就会组装起来。NLRP亚家族的NOD样受体(NLRs)包括炎症小体核聚体(如NLRP3)和NLRP12,NLRP12与家族性自身炎症性疾病有遗传联系,这些疾病类似于由NLRP3功能增益突变体引起的疾病,NLRP3功能增益突变体会产生亢进的NLRP3炎症小体。我们进行了一项筛选,在具有典型吡咯啉-NACHT-LRR结构域的NLR中鉴定ASC炎性体核蛋白。只有NLRP3和NLRP6能启动ASC聚合形成 "斑点",而NLRP12不能使ASC聚合成核。然而,野生型 NLRP12 可抑制由野生型和功能增益突变体 NLRP3 诱导的 ASC 炎性体组装,而与疾病相关的 NLRP12 突变体则没有这种效果。NLRP12 抑制 NLRP3 炎症小体组装的能力仅限于人类 NLRP3,在野生型鼠类 NLRP3 中没有观察到这种能力。此外,NLRP12 突变体相关炎症性疾病患者的外周血单核细胞在 NLRP3 的刺激下产生了更多的炎症细胞因子 IL-1β。因此,我们的研究结果提供了对 NLRP12 生物学的见解,并表明用于治疗 NLRP3 驱动性疾病的临床试验中的 NLRP3 抑制剂也可能对治疗 NLRP12 相关自身炎症性疾病有效。
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NLRP12 interacts with NLRP3 to block the activation of the human NLRP3 inflammasome
Inflammasomes are multiprotein complexes that drive inflammation and contribute to protective immunity against pathogens and immune pathology in autoinflammatory diseases. Inflammasomes assemble when an inflammasome scaffold protein senses an activating signal and forms a signaling platform with the inflammasome adaptor protein ASC. The NLRP subfamily of NOD-like receptors (NLRs) includes inflammasome nucleators (such as NLRP3) and also NLRP12, which is genetically linked to familial autoinflammatory disorders that resemble diseases caused by gain-of-function NLRP3 mutants that generate a hyperactive NLRP3 inflammasome. We performed a screen to identify ASC inflammasome–nucleating proteins among NLRs that have the canonical pyrin-NACHT-LRR domain structure. Only NLRP3 and NLRP6 could initiate ASC polymerization to form “specks,” and NLRP12 failed to nucleate ASC polymerization. However, wild-type NLRP12 inhibited ASC inflammasome assembly induced by wild-type and gain-of-function mutant NLRP3, an effect not seen with disease-associated NLRP12 mutants. The capacity of NLRP12 to suppress NLRP3 inflammasome assembly was limited to human NLRP3 and was not observed for wild-type murine NLRP3. Furthermore, peripheral blood mononuclear cells from patients with an NLRP12 mutant–associated inflammatory disorder produced increased amounts of the inflammatory cytokine IL-1β in response to NLRP3 stimulation. Thus, our findings provide insights into NLRP12 biology and suggest that NLRP3 inhibitors in clinical trials for NLRP3-driven diseases may also be effective in treating NLRP12-associated autoinflammatory diseases.
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来源期刊
Science Signaling
Science Signaling BIOCHEMISTRY & MOLECULAR BIOLOGY-CELL BIOLOGY
CiteScore
9.50
自引率
0.00%
发文量
148
审稿时长
3-8 weeks
期刊介绍: "Science Signaling" is a reputable, peer-reviewed journal dedicated to the exploration of cell communication mechanisms, offering a comprehensive view of the intricate processes that govern cellular regulation. This journal, published weekly online by the American Association for the Advancement of Science (AAAS), is a go-to resource for the latest research in cell signaling and its various facets. The journal's scope encompasses a broad range of topics, including the study of signaling networks, synthetic biology, systems biology, and the application of these findings in drug discovery. It also delves into the computational and modeling aspects of regulatory pathways, providing insights into how cells communicate and respond to their environment. In addition to publishing full-length articles that report on groundbreaking research, "Science Signaling" also features reviews that synthesize current knowledge in the field, focus articles that highlight specific areas of interest, and editor-written highlights that draw attention to particularly significant studies. This mix of content ensures that the journal serves as a valuable resource for both researchers and professionals looking to stay abreast of the latest advancements in cell communication science.
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