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Histone H1 and the dynamic regulation of chromatin function.

机译:组蛋白H1和染色质功能的动态调节。

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Eukaryotic DNA is organized in a complex structure called chromatin. Although a primary function of chromatin is compaction of DNA, this must done such that the underlying DNA is potentially accessible to factor-mediated regulatory responses. Chromatin structure clearly plays a dominant role in regulating much of eukaryotic transcription. The demonstration that reversible covalent modification of the core histones contribute to transcriptional activation and repression by altering chromatin structure and the identification of numerous ATP-dependent chromatin remodeling enzymes provide strong support for this view. Chromatin is much more dynamic than was previously thought and regulation of the dynamic properties of chromatin is a key aspect of gene regulation. This review will focus on recent attempts to elucidate the specific contribution of histone H1 to chromatin-mediated regulation of gene expression.
机译:真核DNA以称为染色质的复杂结构组织。尽管染色质的主要功能是DNA的紧缩,但必须做到这一点,以使潜在的DNA可能受到因子介导的调节反应的影响。染色质结构显然在调节许多真核转录中起主要作用。核心组蛋白的可逆共价修饰通过改变染色质结构而有助于转录激活和抑制的证明,以及众多ATP依赖的染色质重塑酶的鉴定为这一观点提供了有力的支持。染色质比以前认为的要动态得多,对染色质动态特性的调节是基因调节的关键方面。这篇综述将集中在阐明组蛋白H1对染色质介导的基因表达调控的具体贡献的最新尝试上。

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