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天然免疫记忆中的氧化还原信号传导:动物/人类与植物中的相似机制

Redox-signaling in innate immune memory: Similar mechanisms in animals/humans and plants.

作者信息

Lindermayr Christian, Yildirim Ali Önder

机构信息

Institute of Lung Health and Immunity (LHI), Comprehensive Pneumology Center (CPC-M), Helmholtz Munich, Member of the German Center for Lung Research (DZL), Munich, Germany.

Institute of Lung Health and Immunity (LHI), Comprehensive Pneumology Center (CPC-M), Helmholtz Munich, Member of the German Center for Lung Research (DZL), Munich, Germany; Institute of Experimental Pneumology, Ludwig-Maximilians University (LMU), Munich, Germany.

出版信息

Redox Biol. 2025 Jul;84:103702. doi: 10.1016/j.redox.2025.103702. Epub 2025 May 27.

Abstract

Plants and animals/humans have evolved sophisticated innate immune systems to cope with microbial attack. Innate immunity implies the presence of membrane-located and intracellular receptors to recognize compounds released by damage or by invading pathogens. After detection the receptor molecules initiate intracellular defense signaling, resulting in cell death and/or production of defense molecules. Interestingly, the defense response includes also memory mechanisms, which allow the organisms to better cope with future microbial attacks. Redox mechanisms play an important role in defense signaling. In this review article, we compare the innate immune memory of animals/humans and plants and describe how reversible nitric oxide- and reactive oxygen species-dependent protein modifications enable the activation of defense signaling proteins and transcription factors and regulate the activity of chromatin modifying enzymes to establish innate immune memory. We hope to encourage efforts to characterize further molecular redox mechanisms of the innate immune memory, which might enable the development of new immunotherapies.

摘要

植物和动物/人类已经进化出复杂的先天免疫系统来应对微生物攻击。先天免疫意味着存在位于膜上和细胞内的受体,以识别由损伤或入侵病原体释放的化合物。检测到这些化合物后,受体分子启动细胞内防御信号传导,导致细胞死亡和/或防御分子的产生。有趣的是,防御反应还包括记忆机制,这使生物体能够更好地应对未来的微生物攻击。氧化还原机制在防御信号传导中起重要作用。在这篇综述文章中,我们比较了动物/人类和植物的先天免疫记忆,并描述了可逆的一氧化氮和活性氧依赖的蛋白质修饰如何激活防御信号蛋白和转录因子,并调节染色质修饰酶的活性以建立先天免疫记忆。我们希望鼓励人们进一步研究先天免疫记忆的分子氧化还原机制,这可能有助于开发新的免疫疗法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a30f/12166463/54d3ad01fe5d/gr1.jpg

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