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甲基化CpG结合蛋白2(MeCP2)定位于中心体,是有丝分裂纺锤体正常组织所必需的。

Methyl-CpG binding protein 2 (MeCP2) localizes at the centrosome and is required for proper mitotic spindle organization.

作者信息

Bergo Anna, Strollo Marta, Gai Marta, Barbiero Isabella, Stefanelli Gilda, Sertic Sarah, Cobolli Gigli Clementina, Di Cunto Ferdinando, Kilstrup-Nielsen Charlotte, Landsberger Nicoletta

机构信息

From the Department of Theoretical and Applied Sciences, Section of Biomedical Research, University of Insubria, 21052 Busto Arsizio, Italy.

the Molecular Biotechnology Center, Department of Molecular Biotechnologies and Health Sciences, University of Turin, 10126 Turin, Italy.

出版信息

J Biol Chem. 2015 Feb 6;290(6):3223-37. doi: 10.1074/jbc.M114.608125. Epub 2014 Dec 19.

Abstract

Mutations in MECP2 cause a broad spectrum of neuropsychiatric disorders of which Rett syndrome represents the best defined condition. Both neuronal and non-neuronal functions of the methyl-binding protein underlie the related pathologies. Nowadays MeCP2 is recognized as a multifunctional protein that modulates its activity depending on its protein partners and posttranslational modifications. However, we are still missing a comprehensive understanding of all MeCP2 functions and their involvement in the related pathologies. The study of human mutations often offers the possibility of clarifying the functions of a protein. Therefore, we decided to characterize a novel MeCP2 phospho-isoform (Tyr-120) whose relevance was suggested by a Rett syndrome patient carrying a Y120D substitution possibly mimicking a constitutively phosphorylated state. Unexpectedly, we found MeCP2 and its Tyr-120 phospho-isoform enriched at the centrosome both in dividing and postmitotic cells. The molecular and functional connection of MeCP2 to the centrosome was further reinforced through cellular and biochemical approaches. We show that, similar to many centrosomal proteins, MeCP2 deficiency causes aberrant spindle geometry, prolonged mitosis, and defects in microtubule nucleation. Collectively, our data indicate a novel function of MeCP2 that might reconcile previous data regarding the role of MeCP2 in cell growth and cytoskeleton stability and that might be relevant to understand some aspects of MeCP2-related conditions. Furthermore, they link the Tyr-120 residue and its phosphorylation to cell division, prompting future studies on the relevance of Tyr-120 for cortical development.

摘要

MECP2基因的突变会引发一系列广泛的神经精神疾病,其中瑞特综合征是定义最为明确的一种病症。甲基结合蛋白的神经元和非神经元功能均与相关病理过程有关。如今,MeCP2被认为是一种多功能蛋白,其活性会根据蛋白质伴侣和翻译后修饰而发生调节。然而,我们仍缺乏对MeCP2所有功能及其在相关病理过程中所起作用的全面理解。对人类突变的研究常常为阐明蛋白质的功能提供可能。因此,我们决定对一种新的MeCP2磷酸异构体(Tyr-120)进行表征,一名患有瑞特综合征的患者携带Y120D替代突变,可能模拟了一种组成型磷酸化状态,这提示了该异构体的相关性。出乎意料的是,我们发现MeCP2及其Tyr-120磷酸异构体在分裂细胞和有丝分裂后细胞的中心体中均有富集。通过细胞和生化方法进一步加强了MeCP2与中心体之间的分子和功能联系。我们发现,与许多中心体蛋白类似,MeCP2缺乏会导致纺锤体几何形状异常、有丝分裂延长以及微管成核缺陷。总体而言,我们的数据表明了MeCP2的一种新功能,这可能协调了先前关于MeCP2在细胞生长和细胞骨架稳定性方面作用的数据,并且可能与理解MeCP2相关病症的某些方面有关。此外,这些数据将Tyr-120残基及其磷酸化与细胞分裂联系起来,促使未来对Tyr-120在皮质发育中的相关性进行研究。

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