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Histone tail cleavage as a novel epigenetic regulatory mechanism for gene expression

机译:组蛋白尾部切割作为基因表达的新型表观遗传调节机制

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摘要

Chromatin is an intelligent building block that can express either external or internal needs through structural changes. To date, three methods to change chromatin structure and regulate gene expression have been well-documented: histone modification, histone exchange, and ATP-dependent chromatin remodeling. Recently, a growing body of literature has suggested that histone tail cleavage is related to various cellular processes including stem cell differentiation, osteoclast differentiation, granulocyte differentiation, mammary gland differentiation, viral infection, aging, and yeast sporulation. Although the underlying mechanisms suggesting how histone cleavage affects gene expression in view of chromatin structure are only beginning to be understood, it is clear that this process is a novel transcriptional epigenetic mechanism involving chromatin dynamics. In this review, we describe the functional properties of the known histone tail cleavage with its proteolytic enzymes, discuss how histone cleavage impacts gene expression, and present future directions for this area of study.
机译:染色质是一种智能构建块,可以通过结构变化表达外部或内部需求。迄今为止,有三种改变染色质结构和调节基因表达的方法已经详细记录:组蛋白修饰,组蛋白交换和ATP依赖性染色质重塑。最近,越来越多的文献表明,组蛋白尾部切割与各种细胞过程有关,包括干细胞分化,骨细胞分化,粒细胞分化,乳腺分化,病毒感染,老化和酵母孢子。虽然潜在的机制表明组蛋白裂解如何影响染色质结构的基因表达,但显然该方法是涉及染色质动力学的新转录表观遗传机制。在该综述中,我们描述了已知的组蛋白尾部切割与其蛋白水解酶的功能性质,讨论组蛋白裂解如何影响基因表达,并对这一研究领域的未来方向施加。

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