相分离是先天免疫调节的一种新形式

IF 14.5 1区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Lei Wang, Wen Zhou
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引用次数: 0

摘要

先天免疫对宿主抵御病原体、癌症和自身免疫至关重要。先天免疫系统编码了许多传感器、适配器和效应蛋白,并依赖于高阶信号复合体的组装来激活免疫防御。最近的证据表明,参与先天性免疫的许多核心复合物通过一种称为相分离的机制组织成液态凝结物。在这里,我们将讨论相分离的凝聚体及其不同的功能。我们比较了固态和液态组装体的生化、结构和机理细节,以探讨相分离在先天性免疫中的作用。我们总结了相分离是控制整个生命树免疫反应的保守机制这一假设的新证据。先天性免疫中相分离的发现为解释免疫系统的激活规则提供了新的基础,并将促进治疗药物的开发,以正确治疗与免疫相关的疾病。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Phase separation as a new form of regulation in innate immunity

Innate immunity is essential for the host against pathogens, cancer, and autoimmunity. The innate immune system encodes many sensor, adaptor, and effector proteins and relies on the assembly of higher-order signaling complexes to activate immune defense. Recent evidence demonstrates that many of the core complexes involved in innate immunity are organized as liquid-like condensates through a mechanism known as phase separation. Here, we discuss phase-separated condensates and their diverse functions. We compare the biochemical, structural, and mechanistic details of solid and liquid-like assemblies to explore the role of phase separation in innate immunity. We summarize the emerging evidence for the hypothesis that phase separation is a conserved mechanism that controls immune responses across the tree of life. The discovery of phase separation in innate immunity provides a new foundation to explain the rules that govern immune system activation and will enable the development of therapeutics to treat immune-related diseases properly.

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来源期刊
Molecular Cell
Molecular Cell 生物-生化与分子生物学
CiteScore
26.00
自引率
3.80%
发文量
389
审稿时长
1 months
期刊介绍: Molecular Cell is a companion to Cell, the leading journal of biology and the highest-impact journal in the world. Launched in December 1997 and published monthly. Molecular Cell is dedicated to publishing cutting-edge research in molecular biology, focusing on fundamental cellular processes. The journal encompasses a wide range of topics, including DNA replication, recombination, and repair; Chromatin biology and genome organization; Transcription; RNA processing and decay; Non-coding RNA function; Translation; Protein folding, modification, and quality control; Signal transduction pathways; Cell cycle and checkpoints; Cell death; Autophagy; Metabolism.
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