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The NLRC4 inflammasome receptors for bacterial flagellin and type Ⅲ secretion apparatus

机译:细菌鞭毛蛋白和Ⅲ型分泌器的NLRC4炎症小体受体

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摘要

Inflammasomes are large cytoplasmic complexes that sense micro-bial infections/danger molecules and induce caspase-1 activation-dependent cytokine production and macrophage inflammatory death~1,2. The inflammasome assembled by the NOD-like receptor (NLR) protein NLRC4 responds to bacterial flagellin and a conserved type Ⅲ secretion system (TTSS) rod component~3-5. How the NLRC4 inflammasome detects the two bacterial products and the molecular mechanism of NLRC4 inflammasome activation are not understood. Here we show that NAIP5, a BIR-domain NLR protein required for Legionella pneumophila replication in mouse macro-phages~6, is a universal component of the flagellin-NLRC4 pathway. NAIP5 directly and specifically interacted with flagellin, which determined the inflamniasome-stimulation activities of different bacterial flagellins. NAIP5 engagement by flagellin promoted a physical NAIP5-NLRC4 association, rendering full reconstitution of a flagellin-responsive NLRC4 inflammasome in non-macrophage cells. The related NAIP2 functioned analogously to NAIP5, serving as a specific inflammasome receptor for TTSS rod proteins such as Salmonella PrgJ and Burkholderia BsaK. Genetic analysis of Chromobacterium violaceum infection revealed that the TTSS needle protein CprI can stimulate NLRC4 inflammasome activation in human macrophages. Similarly, CprI is specifically recognized by human NAIP, the sole NAIP family member in human. The finding that NAIP proteins are inflammasome receptors for bacterial flagellin and TTSS apparatus components further predicts that the remaining NAIP family members may recognize other unidentified microbial products to activate NLRC4 inflammasome-mediated innate immunity.
机译:炎性小体是大型的细胞质复合物,可感知微生物感染/危险分子并诱导caspase-1激活依赖性细胞因子的产生和巨噬细胞炎性死亡〜1,2。由NOD样受体(NLR)蛋白质NLRC4组装而成的炎性小体对细菌鞭毛蛋白和保守的Ⅲ型分泌系统(TTSS)棒状成分约有3-5的反应。 NLRC4炎性小体如何检测两种细菌产物以及NLRC4炎性小体激活的分子机制尚不清楚。在这里,我们显示NAIP5是嗜肺军团菌在小鼠巨噬细胞〜6中复制所需的BIR域NLR蛋白,是鞭毛蛋白-NLRC4途径的通用组成部分。 NAIP5直接和特异性地与鞭毛蛋白相互作用,这决定了不同细菌鞭毛蛋白的炎性体刺激活性。鞭毛蛋白与NAIP5的结合促进了物理NAIP5-NLRC4缔合,使鞭毛蛋白应答性NLRC4炎性小体在非巨噬细胞中完全重建。相关的NAIP2的功能类似于NAIP5,充当TTSS杆蛋白(如沙门氏菌PrgJ和伯克霍尔德氏菌BsaK)的特定炎症小体受体。紫罗兰色杆菌感染的遗传分析表明,TTSS针状蛋白CprI可以刺激人巨噬细胞中的NLRC4炎性体活化。同样,CprI被人NAIP(人中唯一的NAIP家族成员)特异性识别。 NAIP蛋白是细菌鞭毛蛋白和TTSS装置组件的炎性体受体的发现进一步预测,剩余的NAIP家族成员可能会识别其他未鉴定的微生物产物来激活NLRC4炎性体介导的先天免疫。

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  • 来源
    《Nature》 |2011年第7366期|p.596-600|共5页
  • 作者单位

    Graduate Program in Chinese Academy of Medical Sciences and Peking Union Medical College, Beijing 100730, China,National Institute of Biological Sciences, Beijing, 102206, China;

    Graduate Program in Chinese Academy of Medical Sciences and Peking Union Medical College, Beijing 100730, China,National Institute of Biological Sciences, Beijing, 102206, China;

    National Institute of Biological Sciences, Beijing, 102206, China;

    National Institute of Biological Sciences, Beijing, 102206, China;

    National Institute of Biological Sciences, Beijing, 102206, China;

    National Institute of Biological Sciences, Beijing, 102206, China;

    National Institute of Biological Sciences, Beijing, 102206, China;

    National Institute of Biological Sciences, Beijing, 102206, China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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