Department of Biochemistry and Molecular Biology, Colorado State University, Fort Collins, CO 80525, U.S.A.
Essays Biochem. 2019 Apr 23;63(1):89-96. doi: 10.1042/EBC20180067.
The dynamic structure of chromatin is linked to gene regulation and many other biological functions. Consequently, it is of importance to understand the factors that regulate chromatin dynamics. While the analysis of chromatin has verified that histone post-translational modifications play a role in modulating DNA accessibility, the complex nuclear environment and multiplicity of modifications prevents clear conclusions as to how individual modifications influence chromatin dynamics in the cell. For this reason, analyses of model reconstituted nucleosomal arrays has been pivotal in understanding the dynamic nature of chromatin compaction and the affects that specific post-translational modifications can have on the higher order chromatin structure. In this mini-review, we briefly describe the dynamic chromatin structures that have been observed and the environmental conditions that give rise to these various conformational states. Our focus then turns to a discussion of the specific histone post-translational modifications that have been shown to alter formation of these higher order chromatin structures and how this may relate to the biological state and accessibility of chromatin .
染色质的动态结构与基因调控和许多其他生物学功能有关。因此,了解调节染色质动力学的因素非常重要。虽然对染色质的分析已经证实组蛋白翻译后修饰在调节 DNA 可及性方面发挥作用,但复杂的核环境和多种修饰阻止了人们对单个修饰如何影响细胞中染色质动力学得出明确的结论。出于这个原因,对模型重建核小体阵列的分析对于理解染色质紧缩的动态性质以及特定翻译后修饰对更高阶染色质结构的影响至关重要。在这个小型综述中,我们简要描述了已经观察到的动态染色质结构以及导致这些各种构象状态的环境条件。然后,我们将重点讨论已显示改变这些高级染色质结构形成的特定组蛋白翻译后修饰,以及这如何与染色质的生物学状态和可及性相关。