EpiCypher Inc., Durham, NC 27709, U.S.A.
Biochem J. 2024 Feb 21;481(4):219-244. doi: 10.1042/BCJ20230342.
The role of histone post-translational modifications (PTMs) in chromatin structure and genome function has been the subject of intense debate for more than 60 years. Though complex, the discourse can be summarized in two distinct - and deceptively simple - questions: What is the function of histone PTMs? And how should they be studied? Decades of research show these queries are intricately linked and far from straightforward. Here we provide a historical perspective, highlighting how the arrival of new technologies shaped discovery and insight. Despite their limitations, the tools available at each period had a profound impact on chromatin research, and provided essential clues that advanced our understanding of histone PTM function. Finally, we discuss recent advances in the application of defined nucleosome substrates, the study of multivalent chromatin interactions, and new technologies driving the next era of histone PTM research.
组蛋白翻译后修饰(PTMs)在染色质结构和基因组功能中的作用已经成为 60 多年来激烈争论的主题。尽管很复杂,但这一论述可以概括为两个截然不同的、看似简单的问题:组蛋白 PTM 的功能是什么?以及应该如何研究它们?几十年来的研究表明,这些问题是错综复杂的,远非那么简单。在这里,我们提供了一个历史视角,重点介绍了新技术的出现如何塑造了发现和洞察力。尽管存在局限性,但每个时期可用的工具对染色质研究产生了深远的影响,并提供了重要的线索,使我们对组蛋白 PTM 功能的理解得以推进。最后,我们讨论了在定义核小体底物的应用、多价染色质相互作用的研究以及推动组蛋白 PTM 研究下一阶段的新技术方面的最新进展。