Stockdale Chris, Bruno Michael, Ferreira Helder, Garcia-Wilson Elisa, Wiechens Nicola, Engeholm Maik, Flaus Andrew, Owen-Hughes Tom
Division of Gene Regulation and Expression, School of Life Sciences, University of Dundee, Dundee DDI 5EH, Scotland, UK.
Biochem Soc Symp. 2006(73):109-19. doi: 10.1042/bss0730109.
In the 30 years since the discovery of the nucleosome, our picture of it has come into sharp focus. The recent high-resolution structures have provided a wealth of insight into the function of the nucleosome, but they are inherently static. Our current knowledge of how nucleosomes can be reconfigured dynamically is at a much earlier stage. Here, recent advances in the understanding of chromatin structure and dynamics are highlighted. The ways in which different modes of nucleosome reconfiguration are likely to influence each other are discussed, and some of the factors likely to regulate the dynamic properties of nucleosomes are considered.
自核小体被发现的30年来,我们对它的认识已变得清晰明了。近期的高分辨率结构为深入了解核小体的功能提供了丰富的信息,但这些结构本质上是静态的。我们目前对核小体如何进行动态重构的了解尚处于早期阶段。本文着重介绍了在染色质结构和动力学认识方面的最新进展。讨论了核小体不同重构模式可能相互影响的方式,并考虑了一些可能调节核小体动态特性的因素。