Plasma membrane repair empowers the necrotic survivors as innate immune modulators

IF 6.2 2区 生物学 Q1 CELL BIOLOGY Seminars in cell & developmental biology Pub Date : 2023-08-28 DOI:10.1016/j.semcdb.2023.08.001
Shiqi Xu , Tyler J. Yang , Suhong Xu , Yi-Nan Gong
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引用次数: 2

Abstract

The plasma membrane is crucial to the survival of animal cells, and damage to it can be lethal, often resulting in necrosis. However, cells possess multiple mechanisms for repairing the membrane, which allows them to maintain their integrity to some extent, and sometimes even survive. Interestingly, cells that survive a near-necrosis experience can recognize sub-lethal membrane damage and use it as a signal to secrete chemokines and cytokines, which activate the immune response. This review will present evidence of necrotic cell survival in both in vitro and in vivo systems, including in C. elegans, mouse models, and humans. We will also summarize the various membrane repair mechanisms cells use to maintain membrane integrity. Finally, we will propose a mathematical model to illustrate how near-death experiences can transform dying cells into innate immune modulators for their microenvironment. By utilizing their membrane repair activity, the biological effects of cell death can extend beyond the mere elimination of the cells.

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质膜修复使坏死幸存者成为先天免疫调节剂
质膜对动物细胞的存活至关重要,对质膜的破坏可能是致命的,通常会导致细胞坏死。然而,细胞具有多种修复膜的机制,这使得它们在一定程度上保持完整性,有时甚至存活。有趣的是,在接近坏死的情况下存活下来的细胞可以识别亚致死膜损伤,并将其作为分泌趋化因子和细胞因子的信号,从而激活免疫反应。这篇综述将提供坏死细胞在体外和体内系统中存活的证据,包括秀丽隐杆线虫、小鼠模型和人类。我们还将总结细胞用于维持膜完整性的各种膜修复机制。最后,我们将提出一个数学模型来说明濒死体验如何将濒死细胞转化为其微环境的先天免疫调节剂。通过利用它们的膜修复活性,细胞死亡的生物学效应可以超越细胞的纯粹消除。
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来源期刊
CiteScore
15.10
自引率
1.40%
发文量
310
审稿时长
9.1 weeks
期刊介绍: Seminars in Cell and Developmental Biology is a review journal dedicated to keeping scientists informed of developments in the field of molecular cell and developmental biology, on a topic by topic basis. Each issue is thematic in approach, devoted to an important topic of interest to cell and developmental biologists, focusing on the latest advances and their specific implications. The aim of each issue is to provide a coordinated, readable, and lively review of a selected area, published rapidly to ensure currency.
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Diverse genetic conflicts mediated by molecular mimicry and computational approaches to detect them Outside Front Cover Editorial Board/Publication Information From the cauldron of conflict: Endogenous gene regulation by piRNA and other modes of adaptation enabled by selfish transposable elements Outside Front Cover
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