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Emerging Concepts about NAIP/NLRC4 Inflammasomes

机译:关于NAIP / NLRC4炎性小体的新兴概念

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摘要

Neuronal apoptosis inhibitory protein (NAIP)/NOD-like receptor (NLR) containing a caspase activating and recruitment domain (CARD) 4 (NLRC4) inflammasome complexes are activated in response to proteins from virulent bacteria that reach the cell cytosol. Specific NAIP proteins bind to the agonists and then physically associate with NLRC4 to form an inflammasome complex able to recruit and activate pro-caspase-1. NAIP5 and NAIP6 sense flagellin, component of flagella from motile bacteria, whereas NAIP1 and NAIP2 detect needle and rod components from bacterial type III secretion systems, respectively. Active caspase-1 mediates the maturation and secretion of the pro-inflammatory cytokines, IL-1β and IL-18, and is responsible for the induction of pyroptosis, a pro-inflammatory form of cell death. In addition to these well-known effector mechanisms, novel roles have been described for NAIP/NLRC4 inflammasomes, such as phagosomal maturation, activation of inducible nitric oxide synthase, regulation of autophagy, secretion of inflammatory mediators, antibody production, activation of T cells, among others. These effector mechanisms mediated by NAIP/NLRC4 inflammasomes have been extensively studied in the context of resistance of infections and the potential of their agonists has been exploited in therapeutic strategies to non-infectious pathologies, such as tumor protection. Thus, this review will discuss current knowledge about the activation of NAIP/NLRC4 inflammasomes and their effector mechanisms.
机译:含有半胱天冬酶激活和募集结构域(CARD)4(NLRC4)炎性小体复合物的神经元凋亡抑制蛋白(NAIP)/ NOD样受体(NLR)被激活,以响应来自强细菌的蛋白到达细胞质。特定的NAIP蛋白与激动剂结合,然后与NLRC4物理结合,形成能够招募和激活pro-caspase-1的炎症小体复合物。 NAIP5和NAIP6感知鞭毛蛋白,即游动细菌鞭毛的成分,而NAIP1和NAIP2分别检测细菌III型分泌系统的针和杆成分。活跃的caspase-1介导促炎性细胞因子IL-1β和IL-18的成熟和分泌,并负责诱导促凋亡,即促炎性细胞死亡形式。除了这些众所周知的效应器机制外,NAIP / NLRC4炎性小体还发挥了新颖的作用,例如吞噬体成熟,诱导型一氧化氮合酶激活,自噬调节,炎症介质分泌,抗体产生,T细胞激活,其中。由NAIP / NLRC4炎性小体介导的这些效应子机制已在感染抗性的背景下进行了广泛研究,其激动剂的潜力已在非传染性病理学治疗策略(例如肿瘤保护)中得到开发。因此,本文将讨论有关NAIP / NLRC4炎性小体激活及其效应机制的最新知识。

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