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超级增强子在炎症基因转录中的潜在作用。

Potential roles of super enhancers in inflammatory gene transcription.

机构信息

Department of Proteomics, The Novo Nordisk Foundation Center for Protein Research, Faculty of Health and Medical Sciences, University of Copenhagen, Denmark.

Isotope Science Center, The University of Tokyo, Japan.

出版信息

FEBS J. 2022 Oct;289(19):5762-5775. doi: 10.1111/febs.16089. Epub 2021 Jul 10.

Abstract

Acute and chronic inflammation is a basic pathological event that contributes to atherosclerosis, cancer, infectious diseases, and immune disorders. Inflammation is an adaptive process to both external and internal stimuli experienced by the human body. Although the mechanism of gene transcription is highly complicated and orchestrated in a timely and spatial manner, recent developments in next-generation sequencing, genome-editing, cryo-electron microscopy, and single cell-based technologies could provide us with insights into the roles of super enhancers (SEs). Initially, SEs were implicated in determining cell fate; subsequent studies have clarified that SEs are associated with various pathological conditions, including cancer and inflammatory diseases. Recent technological advances have unveiled the molecular mechanisms of SEs, which involve epigenetic histone modifications, chromatin three-dimensional structures, and phase-separated condensates. In this review, we discuss the relationship between inflammation and SEs and the therapeutic potential of SEs for inflammatory diseases.

摘要

急、慢性炎症是导致动脉粥样硬化、癌症、传染病和免疫紊乱的基本病理事件。炎症是人体对外界和内部刺激的一种适应性过程。尽管基因转录的机制非常复杂,并且在时间和空间上得到了很好的协调,但下一代测序、基因组编辑、冷冻电镜和单细胞技术的最新发展可以让我们深入了解超级增强子 (SEs) 的作用。最初,SEs 被认为决定细胞命运;随后的研究表明,SEs 与包括癌症和炎症性疾病在内的各种病理状况有关。最近的技术进步揭示了 SEs 的分子机制,包括表观遗传组蛋白修饰、染色质三维结构和相分离凝聚物。在这篇综述中,我们讨论了炎症与 SEs 的关系,以及 SEs 在炎症性疾病治疗方面的潜力。

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