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Lateral Thinking: How Histone Modifications Regulate Gene Expression

机译:横向思考:组蛋白修饰如何调控基因表达

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摘要

The DNA of each cell is wrapped around histone octamers, forming so-called `nucleosomal core particles'. These histone proteins have tails that project from the nucleosome and many residues in these tails can be post-translationally modified, influencing all DNA-based processes, including chromatin compaction, nucleosome dynamics, and transcription. In contrast to those present in histone tails, modifications in the core regions of the histones had remained largely uncharacterised until recently, when some of these modifications began to be analysed in detail. Overall, recent work has shown that histone core modifications can not only directly regulate transcription, but also influence processes such as DNA repair, replication, sternness, and changes in cell state. In this review, we focus on the most recent developments in our understanding of histone modifications, particularly those on the lateral surface of the nucleosome. This region is in direct contact with the DNA and is formed by the histone cores. We suggest that these lateral surface modifications represent a key insight into chromatin regulation in the cell. Therefore, lateral surface modifications form a key area of interest and a focal point of ongoing study in epigenetics.
机译:每个细胞的DNA包裹在组蛋白八聚体周围,形成所谓的“核小体核心颗粒”。这些组蛋白具有从核小体伸出的尾巴,这些尾巴中的许多残基可以进行翻译后修饰,影响所有基于DNA的过程,包括染色质紧实,核小体动力学和转录。与组蛋白尾巴中存在的那些相反,组蛋白核心区域的修饰在很大程度上尚未得到表征,直到最近,当其中一些修饰开始被详细分析时。总的来说,最近的工作表明,组蛋白核心修饰不仅可以直接调节转录,而且可以影响DNA修复,复制,严厉和细胞状态变化等过程。在这篇综述中,我们集中于对组蛋白修饰的最新进展,特别是在核小体侧面的修饰。该区域与DNA直接接触,由组蛋白核心形成。我们建议这些侧面修饰代表细胞中染色质调节的关键见解。因此,侧面修饰是表观遗传学研究的重点和关注点。

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