关于 Gasdermin D 孔隙形成的新见解。

IF 3.8 3区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
Shirin Kappelhoff, Eleonora G Margheritis, Katia Cosentino
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引用次数: 0

摘要

Gasdermin D(GSDMD)是一种孔形成蛋白,可在细胞死亡的促炎症形式--火化过程中穿透质膜(PM),诱导炎症细胞因子的非常规分泌,并最终导致细胞溶解。GSDMD 由蛋白酶介导的活性 N 端结构域与自身抑制 C 端结构域裂解激活。炎症性 caspase-1、-4/5 是通过炎症小体激活的规范或非规范途径激活 GSDMD 的主要因子,但在某些刺激下,caspase-8 和其他蛋白酶也能激活 GSDMD。活化的 GSDMD 可以寡聚并组装成各种不同大小和形状的纳米结构,从而穿透细胞膜,这表明孔隙的形成具有可塑性。虽然孔隙形成的确切机制尚未被破解,但半胱氨酸残基正成为寡聚过程的关键调节剂。GSDMD 孔隙以及热昏迷的结果可通过各种调节机制进行调节。这些机制包括 PM 上活化的 GSDMD 的可用性、PM 修复机制对 GSDMD 孔隙数量的控制、脂质环境的调节以及翻译后修饰。在此,我们回顾了有关诱导 GSDMD 形成膜孔的机制以及如何对其进行严格调控以实现细胞内容释放和细胞命运调控的最新发现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
New insights into Gasdermin D pore formation.

Gasdermin D (GSDMD) is a pore-forming protein that perforates the plasma membrane (PM) during pyroptosis, a pro-inflammatory form of cell death, to induce the unconventional secretion of inflammatory cytokines and, ultimately, cell lysis. GSDMD is activated by protease-mediated cleavage of its active N-terminal domain from the autoinhibitory C-terminal domain. Inflammatory caspase-1, -4/5 are the main activators of GSDMD via either the canonical or non-canonical pathways of inflammasome activation, but under certain stimuli, caspase-8 and other proteases can also activate GSDMD. Activated GSDMD can oligomerize and assemble into various nanostructures of different sizes and shapes that perforate cellular membranes, suggesting plasticity in pore formation. Although the exact mechanism of pore formation has not yet been deciphered, cysteine residues are emerging as crucial modulators of the oligomerization process. GSDMD pores and thus the outcome of pyroptosis can be modulated by various regulatory mechanisms. These include availability of activated GSDMD at the PM, control of the number of GSDMD pores by PM repair mechanisms, modulation of the lipid environment and post-translational modifications. Here, we review the latest findings on the mechanisms that induce GSDMD to form membrane pores and how they can be tightly regulated for cell content release and cell fate modulation.

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来源期刊
Biochemical Society transactions
Biochemical Society transactions 生物-生化与分子生物学
CiteScore
7.80
自引率
0.00%
发文量
351
审稿时长
3-6 weeks
期刊介绍: Biochemical Society Transactions is the reviews journal of the Biochemical Society. Publishing concise reviews written by experts in the field, providing a timely snapshot of the latest developments across all areas of the molecular and cellular biosciences. Elevating our authors’ ideas and expertise, each review includes a perspectives section where authors offer comment on the latest advances, a glimpse of future challenges and highlighting the importance of associated research areas in far broader contexts.
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