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Regulation of inflammasomes by autophagy.自噬对炎症小体的调节。
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本文引用的文献

1
Deubiquitination of NLRP3 by BRCC3 critically regulates inflammasome activity.BRCC3 对 NLRP3 的去泛素化修饰对炎症小体的活性具有关键调控作用。
Mol Cell. 2013 Jan 24;49(2):331-8. doi: 10.1016/j.molcel.2012.11.009. Epub 2012 Dec 13.
2
Activation of the Nlrp1b inflammasome by reduction of cytosolic ATP.Nlrp1b 炎性小体被细胞溶质 ATP 减少激活。
Infect Immun. 2013 Feb;81(2):570-9. doi: 10.1128/IAI.01003-12. Epub 2012 Dec 10.
3
NLRX1 does not inhibit MAVS-dependent antiviral signalling.NLRX1 并不抑制 MAVS 依赖性抗病毒信号转导。
Innate Immun. 2013;19(4):438-48. doi: 10.1177/1753425912467383. Epub 2012 Dec 4.
4
Deubiquitinases regulate the activity of caspase-1 and interleukin-1β secretion via assembly of the inflammasome.去泛素化酶通过组装炎症小体来调节半胱天冬酶-1 的活性和白细胞介素-1β 的分泌。
J Biol Chem. 2013 Jan 25;288(4):2721-33. doi: 10.1074/jbc.M112.422238. Epub 2012 Dec 3.
5
The calcium-sensing receptor regulates the NLRP3 inflammasome through Ca2+ and cAMP.钙敏感受体通过 Ca2+ 和 cAMP 调节 NLRP3 炎症小体。
Nature. 2012 Dec 6;492(7427):123-7. doi: 10.1038/nature11588. Epub 2012 Nov 11.
6
The CARD plays a critical role in ASC foci formation and inflammasome signalling.CARD 在 ASC 焦点形成和炎症小体信号转导中发挥关键作用。
Biochem J. 2013 Feb 1;449(3):613-21. doi: 10.1042/BJ20121198.
7
Cutting edge: nitric oxide inhibits the NLRP3 inflammasome.前沿:一氧化氮抑制 NLRP3 炎性小体。
J Immunol. 2012 Dec 1;189(11):5113-7. doi: 10.4049/jimmunol.1202479. Epub 2012 Oct 24.
8
Formation and structure of a NAIP5-NLRC4 inflammasome induced by direct interactions with conserved N- and C-terminal regions of flagellin.NAIP5-NLRC4 炎性小体的形成和结构是通过 flagellin 的保守 N 端和 C 端区域的直接相互作用诱导的。
J Biol Chem. 2012 Nov 9;287(46):38460-72. doi: 10.1074/jbc.M112.393512. Epub 2012 Sep 25.
9
Non-transcriptional priming and deubiquitination regulate NLRP3 inflammasome activation.非转录激活和去泛素化调节 NLRP3 炎症小体的激活。
J Biol Chem. 2012 Oct 19;287(43):36617-22. doi: 10.1074/jbc.M112.407130. Epub 2012 Sep 4.
10
Toll or interleukin-1 receptor (TIR) domain-containing adaptor inducing interferon-β (TRIF)-mediated caspase-11 protease production integrates Toll-like receptor 4 (TLR4) protein- and Nlrp3 inflammasome-mediated host defense against enteropathogens.Toll 或白介素-1 受体(TIR)结构域包含衔接子诱导干扰素-β(TRIF)介导的半胱天冬酶-11 蛋白酶产生,整合了 Toll 样受体 4(TLR4)蛋白和 Nlrp3 炎性小体介导的宿主防御作用以对抗肠道病原体。
J Biol Chem. 2012 Oct 5;287(41):34474-83. doi: 10.1074/jbc.M112.401406. Epub 2012 Aug 16.

自噬与炎症小体交汇的调控。

Regulation where autophagy intersects the inflammasome.

机构信息

Department of Molecular Microbiology and Immunology, Keck School of Medicine, University of Southern California , Los Angeles, California.

出版信息

Antioxid Redox Signal. 2014 Jan 20;20(3):495-506. doi: 10.1089/ars.2013.5347. Epub 2013 Jul 31.

DOI:10.1089/ars.2013.5347
PMID:23642014
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3894701/
Abstract

SIGNIFICANCE

The autophagy and inflammasome pathways are ancient innate immune mechanisms for controlling invading pathogens that are linked by mutual regulation. In addition to controlling the metabolic homeostasis of the cell through nutrient recycling, the "self-eating" process of autophagy is also responsible for the degradation of damaged organelles, cells, and pathogens to protect the integrity of the organism. As a cytosolic pathogen recognition receptor (PRR) complex, the inflammasome both induces and is induced by autophagy through direct interactions with autophagy proteins or through the effects of secondary molecules, such as mitochondrial reactive oxygen species and mitochondrial DNA.

RECENT ADVANCES

While the molecular mechanisms of inflammasome activation and regulation are largely unknown, much of the current knowledge has been established through investigation of the role of autophagy in innate immunity. Likewise, regulatory proteins in the NOD-like receptor family, which includes inflammasome PRRs, are able to stimulate autophagy in response to the presence of a pathogen.

CRITICAL ISSUES

Many of the newly uncovered links between autophagy and inflammasomes have raised new questions about the mechanisms controlling inflammasome function, which are highlighted in this review.

FUTURE DIRECTIONS

Our basic understanding of the mutual regulation of inflammasomes and autophagy will be essential for designing therapeutics for chronic inflammatory diseases, especially those for which autophagy and inflammasome genes have already been linked.

摘要

意义

自噬和炎性小体途径是古老的先天免疫机制,用于控制入侵病原体,它们通过相互调节联系在一起。除了通过营养回收来控制细胞的代谢稳态外,自噬的“自我吞噬”过程还负责降解受损的细胞器、细胞和病原体,以保护生物体的完整性。作为细胞质病原体识别受体 (PRR) 复合物,炎性小体通过与自噬蛋白的直接相互作用或通过二次分子(如线粒体活性氧和线粒体 DNA)的作用,诱导和被自噬诱导。

最新进展

虽然炎性小体激活和调节的分子机制在很大程度上尚不清楚,但目前的大部分知识是通过研究自噬在先天免疫中的作用而建立的。同样,包含炎性小体 PRR 的 NOD 样受体家族中的调节蛋白能够在存在病原体时刺激自噬。

关键问题

自噬和炎性小体之间新发现的许多联系提出了有关控制炎性小体功能的机制的新问题,这在本综述中得到了强调。

未来方向

我们对炎性小体和自噬相互调节的基本理解对于设计治疗慢性炎症性疾病的方法至关重要,特别是对于那些已经与自噬和炎性小体基因相关的疾病。