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MECP2 与它的底物协同结合,并与组蛋白 H1 竞争染色质结合位点。

MeCP2 binds cooperatively to its substrate and competes with histone H1 for chromatin binding sites.

机构信息

Program in Molecular and Cellular Biology, University of Massachusetts, 611 N. Pleasant Street, Amherst, MA 01003, USA.

出版信息

Mol Cell Biol. 2010 Oct;30(19):4656-70. doi: 10.1128/MCB.00379-10. Epub 2010 Aug 2.

Abstract

Sporadic mutations in the hMeCP2 gene, coding for a protein that preferentially binds symmetrically methylated CpGs, result in the severe neurological disorder Rett syndrome (RTT). In the present work, employing a wide range of experimental approaches, we shed new light on the many levels of MeCP2 interaction with DNA and chromatin. We show that strong methylation-independent as well as methylation-dependent binding by MeCP2 is influenced by DNA length. Although MeCP2 is strictly monomeric in solution, its binding to DNA is cooperative, with dimeric binding strongly correlated with methylation density, and strengthened by nearby A/T repeats. Dimeric binding is abolished in the F155S and R294X severe RTT mutants. MeCP2 also binds chromatin in vitro, resulting in compaction-related changes in nucleosome architecture that resemble the classical zigzag motif induced by histone H1 and considered important for 30-nm-fiber formation. In vivo chromatin binding kinetics and in vitro steady-state nucleosome binding of both MeCP2 and H1 provide strong evidence for competition between MeCP2 and H1 for common binding sites. This suggests that chromatin binding by MeCP2 and H1 in vivo should be viewed in the context of competitive multifactorial regulation.

摘要

hMeCP2 基因中的散发性突变导致一种优先结合对称甲基化 CpG 的蛋白质,从而导致严重的神经发育障碍雷特综合征(RTT)。在本工作中,我们采用了广泛的实验方法,揭示了 MeCP2 与 DNA 和染色质相互作用的多个层次。我们表明,MeCP2 与 DNA 的强非甲基化依赖性和甲基化依赖性结合受 DNA 长度的影响。尽管 MeCP2 在溶液中严格是单体形式,但它与 DNA 的结合是协同的,二聚体结合与甲基化密度强烈相关,并通过附近的 A/T 重复序列增强。F155S 和 R294X 严重 RTT 突变体中的二聚体结合被废除。MeCP2 也在体外结合染色质,导致核小体结构的压缩相关变化,类似于组蛋白 H1 诱导的经典锯齿状模式,被认为对 30nm 纤维形成很重要。体内染色质结合动力学和体外 MeCP2 和 H1 的稳态核小体结合都为 MeCP2 和 H1 对常见结合位点的竞争提供了强有力的证据。这表明,体内 MeCP2 和 H1 的染色质结合应该在竞争的多因素调节的背景下进行观察。

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