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NLRP3 inflammasome: From a danger signal sensor to a regulatory node of oxidative stress and inflammatory diseases

机译:NLRP3炎症小体:从危险信号传感器到氧化应激和炎症性疾病的调节节点

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摘要

IL-1β production is critically regulated by cytosolic molecular complexes, termed inflammasomes. Different inflammasome complexes have been described to date.While all inflammasomes recognize certain pathogens, it is the distinctive feature of NLRP3 inflammasome to be activated by many and diverse stimuli making NLRP3 the most versatile, and importantly also the most clinically implicated inflammasome. However, NLRP3 activation has remained the most enigmatic. It is not plausible that the intracellular NLRP3 receptor is able to detect all of its many and diverse triggers through direct interactions; instead, it is discussed that NLRP3 is responding to certain generic cellular stress-signals induced by the multitude of molecules that trigger its activation.An ever increasing number of studies link the sensing of cellular stress signals to a direct pathophysiological role of NLRP3 activation in a wide range of autoinflammatory and autoimmune disorders, and thus provide a novel mechanistic rational, on how molecules trigger and support sterile inflammatory diseases. A vast interest has created to unravel how NLRP3 becomes activated, since mechanistic insight is the prerequisite for a knowledge-based development of therapeutic intervention strategies that specifically target the NLRP3 triggered IL-1β production. In this review, we have updated knowledge on NLRP3 inflammasome assembly and activation and on the pyrin domain in NLRP3 that could represent a drug target to treat sterile inflammatory diseases. We have reported mutations in NLRP3 that were found to be associated with certain diseases. In addition, we have reviewed the functional link between NLRP3 inflammasome, the regulator of cellular redox status Trx/TXNIP complex, endoplasmic reticulum stress and the pathogenesis of diseases such as type 2 diabetes. Finally, we have provided data on NLRP3 inflammasome, as a critical regulator involved in the pathogenesis of obesity and cardiovascular diseases.
机译:IL-1β的产生受到称为炎症小体的胞质分子复合物的关键调控。迄今为止,已经描述了不同的炎性体复合物。尽管所有炎性体均识别某些病原体,但是NLRP3炎性体的独特特征是可以通过多种多样的刺激来激活,从而使NLRP3成为用途最广,最重要的是最牵连临床的炎性体。但是,NLRP3激活仍然是最令人费解的。细胞内NLRP3受体能够通过直接相互作用来检测其所有多种触发因素是不合理的。相反,讨论的是NLRP3对由多种触发其活化的分子诱导的某些通用细胞应激信号作出反应。越来越多的研究将细胞应激信号的感知与NLRP3激活在动物体内的直接病理生理作用联系起来。广泛的自体炎症和自身免疫性疾病,因此就分子如何触发和支持无菌性炎性疾病提供了一种新颖的机制理性。为了了解NLRP3是如何被激活的,人们产生了极大的兴趣,因为机械的洞察力是专门针对NLRP3触发IL-1β产生的以治疗为基础的基于知识的治疗干预策略发展的前提。在这篇综述中,我们更新了有关NLRP3炎性小体组装和激活以及NLRP3中的吡啶结构域的知识,这些知识可能代表治疗无菌炎性疾病的药物靶标。我们已经报道了与某些疾病相关的NLRP3突变。此外,我们已经审查了NLRP3炎性体,细胞氧化还原状态Trx / TXNIP复合体的调节剂,内质网应激与2型糖尿病等疾病的发病机制之间的功能联系。最后,我们提供了有关NLRP3炎性体的数据,NLRP3炎性体是肥胖症和心血管疾病发病机理中的关键调控因子。

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