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Functions of chromatin remodeling factors in heterochromatin formation and maintenance

机译:染色质重塑因子在异染色质形成和维持中的作用

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Heterochromatin is characteristically more compact than euchromatin in the eukaryotic genome. The establishment of heterochromatin is mediated by special histone modifications, recruitment and propagation of heterochromatin specific proteins, as well as formation of special primary and high order structures of chromatin. Chromatin remodeling factors are ATPases that can alter the conformation and/or positioning of nucleosomes along DNA in an ATP-dependent manner. There is increasing evidence implicating chromatin remodeling activities in heterochromatin in various organisms ranging from yeasts to humans. Chromatin remodeling factors play roles in the establishment, maintenance and epigenetic inheritance of heterochromatin, but the underlying molecular mechanisms have just begun to be investigated.
机译:在真核生物基因组中,异染色质的特征比真染色质更紧密。异染色质的建立是由特殊的组蛋白修饰,异染色质特异性蛋白的募集和繁殖以及染色质的特殊一级和高级结构的形成介导的。染色质重塑因子是ATPase,可以以ATP依赖性方式改变核小体沿DNA的构象和/或位置。越来越多的证据表明在从酵母到人类的各种生物中,异染色质中的染色质重塑活性。染色质重塑因子在异染色质的建立,维持和表观遗传中起着重要作用,但是其潜在的分子机制才刚刚开始被研究。

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