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首页> 外文期刊>Nucleic acids research >Chromatin-dependent allosteric regulation of DNMT3A activity by MeCP2
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Chromatin-dependent allosteric regulation of DNMT3A activity by MeCP2

机译:MeCP2对染色质的DNMT3A活性的变构调节

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摘要

Despite their central importance in mammalian development, the mechanisms that regulate the DNA methylation machinery and thereby the generation of genomic methylation patterns are still poorly understood. Here, we identify the 5mC-binding protein MeCP2 as a direct and strong interactor of DNA methyltransferase 3 (DNMT3) proteins. We mapped the interaction interface to the transcriptional repression domain of MeCP2 and the ADD domain of DNMT3A and find that binding of MeCP2 strongly inhibits the activity of DNMT3A in vitro. This effect was reinforced by cellular studies where a global reduction of DNA methylation levels was observed after overexpression of MeCP2 in human cells. By engineering conformationally locked DNMT3A variants as novel tools to study the allosteric regulation of this enzyme, we show that MeCP2 stabilizes the closed, autoinhibitory conformation of DNMT3A. Interestingly, the interaction with MeCP2 and its resulting inhibition were relieved by the binding of K4 unmodified histone H3 N-terminal tail to the DNMT3A–ADD domain. Taken together, our data indicate that the localization and activity of DNMT3A are under the combined control of MeCP2 and H3 tail modifications where, depending on the modification status of the H3 tail at the binding sites, MeCP2 can act as either a repressor or activator of DNA methylation.
机译:尽管它们在哺乳动物发育中具有重要意义,但调节DNA甲基化机制并由此产生基因组甲基化模式的机制仍知之甚少。在这里,我们确定5mC结合蛋白MeCP2是DNA甲基转移酶3(DNMT3)蛋白的直接和强大的相互作用者。我们将相互作用界面映射到MeCP2的转录抑制域和DNMT3A的ADD域,发现MeCP2的结合强烈抑制了DNMT3A的体外活性。细胞研究加强了这种作用,在人类细胞中MeCP2过表达后,观察到DNA甲基化水平的总体降低。通过工程化构象锁定的DNMT3A变体作为研究该酶的变构调节的新工具,我们表明MeCP2稳定了DNMT3A的封闭,自抑制构象。有趣的是,通过未修饰的K4组蛋白H3 N末端尾与DNMT3A–ADD结构域的结合,与MeCP2的相互作用及其产生的抑制作用得以缓解。综上所述,我们的数据表明DNMT3A的定位和活性受MeCP2和H3尾部修饰的联合控制,其中,根据结合位点H3尾部的修饰状态,MeCP2可以充当HCP的阻遏物或激活物。 DNA甲基化。

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