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HMGN dynamics and chromatin function.

机译:HMGN动力学和染色质功能。

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Recent studies indicate that most nuclear proteins, including histone H1 and HMG are highly mobile and their interaction with chromatin is transient. These findings suggest that the structure of chromatin is dynamic and the protein composition at any particular chromatin site is not fixed. Here we discuss how the dynamic behavior of the nucleosome binding HMGN proteins affects the structure and function of chromatin. The high intranuclear mobility of HMGN insures adequate supply of protein throughout the nucleus and serves to target these proteins to their binding sites. Transient interactions of the proteins with nucleosomes destabilize the higher order chromatin, enhance the access to nucleosomal DNA, and impart flexibility to the chromatin fiber. While roaming the nucleus, the HMGN proteins encounter binding partners and form metastable multiprotein complexes, which modulate their chromatin interactions. Studies with HMGN proteins underscore the important role of protein dynamics in chromatin function.
机译:最近的研究表明,大多数核蛋白,包括组蛋白H1和HMG,都是高度可移动的,它们与染色质的相互作用是瞬时的。这些发现表明,染色质的结构是动态的,并且任何特定染色质位点的蛋白质组成都不固定。在这里我们讨论核小体结合HMGN蛋白的动态行为如何影响染色质的结构和功能。 HMGN的高核内迁移率可确保整个核中有足够的蛋白质供应,并能将这些蛋白质靶向其结合位点。蛋白质与核小体的短暂相互作用会破坏高阶染色质的稳定性,增强对核小体DNA的访问,并为染色质纤维赋予柔韧性。在漫游核时,HMGN蛋白遇到结合伴侣并形成亚稳态的多蛋白复合物,从而调节它们的染色质相互作用。 HMGN蛋白研究强调了蛋白动力学在染色质功能中的重要作用。

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