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Connection between histone H2A variants and chromatin remodeling complexes.

机译:组蛋白H2A变体与染色质重塑复合物之间的联系。

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摘要

The organization of the eukaryotic genome into chromatin makes it inaccessible to the factors required for gene transcription and DNA replication, recombination, and repair. In addition to histone-modifying enzymes and ATP-dependent chromatin remodeling complexes, which play key roles in regulating many nuclear processes by altering the chromatin structure, cells have developed a mechanism of modulating chromatin structure by incorporating histone variants. These variants are incorporated into specific regions of the genome throughout the cell cycle. H2A.Z, which is an evolutionarily conserved H2A variant, performs several seemingly unrelated and even contrary functions. Another H2A variant, H2A.X, plays a very important role in the cellular response to DNA damage. This review summarizes the recent developments in our understanding of the role of H2A.Z and H2A.X in the regulation of chromatin structure and function, focusing on their functional links with chromatin modifying and remodeling complexes.
机译:真核基因组进入染色质的组织使其无法进入基因转录,DNA复制,重组和修复所需的因子。除了通过改变染色质结构在调节许多核过程中起关键作用的组蛋白修饰酶和ATP依赖的染色质重塑复合物外,细胞还通过结合组蛋白变体开发了一种调节染色质结构的机制。在整个细胞周期中,将这些变体掺入基因组的特定区域。 H2A.Z是进化上保守的H2A变体,执行一些看似无关甚至相反的功能。另一个H2A变体H2A.X在细胞对DNA损伤的反应中起着非常重要的作用。这篇综述总结了我们对H2A.Z和H2A.X在染色质结构和功能调节中的作用的理解的最新进展,重点是它们与染色质修饰和重塑复合物的功能联系。

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