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Physical methods used to study core histone tail structures and interactions in solution

机译:用于研究核心组蛋白尾巴结构和溶液中相互作用的物理方法

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摘要

The core histone tail domains are key regulatory elements in chromatin. The tails are essential for folding oligonucleosomal arrays into both secondary and tertiary structures, and post-translational modifications within these domains can directly alter DNA accessibility. Unfortunately, there is little understanding of the structures and interactions of the core histone tail domains or how post-translational modifications within the tails may alter these interactions. Here we review NMR, thermal denaturation, cross-linking, and other selected solution methods used to define the general structures and binding behavior of the tail domains in various chromatin environments. All of these methods indicate that the tail domains bind primarily electrostatically to sites within chromatin. The data also indicate that the tails adopt specific structures when bound to DNA and that tail structures and interactions are plastic, depending on the specific chromatin environment. In addition, post-translational modifications, such as acetylation, can directly alter histone tail structures and interactions.
机译:核心组蛋白尾部结构域是染色质中的关键调控元件。尾部对于将寡核小体阵列折叠成二级和三级结构至关重要,这些结构域内的翻译后修饰可直接改变DNA的可及性。不幸的是,对核心组蛋白尾部结构域的结构和相互作用或尾部内翻译后修饰如何改变这些相互作用的了解很少。在这里,我们回顾了NMR,热变性,交联和其他用于定义各种染色质环境中尾结构域的一般结构和结合行为的溶液方法。所有这些方法表明,尾部结构域主要通过静电方式与染色质内的位点结合。数据还表明,尾巴与DNA结合时采用特定的结构,并且尾巴的结构和相互作用是可塑性的,具体取决于特定的染色质环境。另外,翻译后修饰,例如乙酰化,可以直接改变组蛋白尾部结构和相互作用。

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