首页> 外文期刊>Journal of Cell Science >Analysis of protein domains and Rett syndrome mutations indicate that multiple regions influence chromatin-binding dynamics of the chromatin-associated protein MECP2 in vivo.
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Analysis of protein domains and Rett syndrome mutations indicate that multiple regions influence chromatin-binding dynamics of the chromatin-associated protein MECP2 in vivo.

机译:蛋白质结构域和Rett综合征突变的分析表明,多个区域会影响体内与染色质相关的蛋白质MECP2的染色质结合动力学。

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摘要

The methyl-CpG-binding protein 2 (MECP2) serves both organizational and transcriptional functions in the nucleus, with two well-characterized domains integrally related to these functions. The recognition of methylated CpG dinucleotides is accomplished by the methyl-binding domain (MBD), and the transcriptional repression domain (TRD) facilitates protein-protein interactions with chromatin remodeling proteins. For each known function of MECP2, chromatin binding is a crucial activity. Here, we apply photobleaching strategies within the nucleus using domain-deleted MECP2 proteins as well as naturally occurring point mutations identified in individuals with the neurodevelopmental disorder Rett syndrome (RTT). These studies reveal that MECP2 is transiently associated with chromatin in vivo and confirm a central role for the MBD in directing the protein to heterochromatin. In addition, we report for the first time that the small region between the MBD and the TRD, known as the interdomain region (ID), stabilizes chromatin binding by MECP2 independently of the MBD. The TRD of MECP2 also contributes towards chromatin binding, whereas the N- and C-termini do not. Some common RTT missense and nonsense mutations significantly affect binding kinetics, suggesting that alterations in chromatin binding can result in protein dysfunction and hence a disease phenotype.
机译:甲基CpG结合蛋白2(MECP2)在细胞核中同时发挥组织功能和转录功能,其中两个功能完备的结构域与这些功能整体相关。甲基化的CpG二核苷酸的识别是通过甲基结合域(MBD)实现的,而转录抑制域(TRD)则促进了蛋白质与染色质重塑蛋白的相互作用。对于MECP2的每个已知功能,染色质结合是至关重要的活动。在这里,我们使用域删除的MECP2蛋白以及在具有神经发育障碍Rett综合征(RTT)的个体中鉴定的自然发生的点突变,在细胞核内应用光漂白策略。这些研究表明,MECP2在体内与染色质瞬时相关,并证实了MBD在将蛋白质引导至异染色质中的重要作用。此外,我们首次报告MBD和TRD之间的小区域称为域间区域(ID),可独立于MBD稳定通过MECP2的染色质结合。 MECP2的TRD也有助于染色质结合,而N和C末端则不起作用。一些常见的RTT错义和无义突变显着影响结合动力学,表明染色质结合的改变可导致蛋白质功能障碍,从而导致疾病表型。

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