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首页> 外文期刊>Journal of neurobiology >The expression of methyl CpG binding factor MeCP2 correlates with cellular differentiation in the developing rat brain and in cultured cells.
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The expression of methyl CpG binding factor MeCP2 correlates with cellular differentiation in the developing rat brain and in cultured cells.

机译:甲基CpG结合因子MeCP2的表达与发育中的大鼠大脑和培养细胞中的细胞分化有关。

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摘要

Mutations in the MeCP2 gene cause Rett syndrome, a neurologic condition affecting primarily young girls. To gain insight into the normal function of MeCP2, we examined its temporal and spatial expression patterns, and immunoreactive prevalence, during late embryonic and perinatal brain development. MeCP2 mRNA was detected in most regions of the developing rat brain by the late embryonic stage. Regions displaying the strongest mRNA expression include the hippocampus, cortex, and cerebellum, and moderate expression was observed in most other brain regions. At the protein level, MeCP2 was strongly expressed in adult forebrain neurons, but was not detected in astrocytes. The nonubiquitous expression of MeCP2 was also observed in the embryonic cortex, as about one-third of acutely dissociated embryonic day 14 neuroepithelial cells failed to stain with MeCP2. To test whether MeCP2 expression correlates with neuronal differentiation, colocalization of MeCP2 expression with either the precursor cell marker nestin or the young neuronal marker beta-III tubulin was examined in the same acutely dissociated cortical cells. Although strong MeCP2 expression was detected in approximately 75% of beta-III tubulin-positive cells, only about 25% of nestin-positive precursor cells were MeCP2 positive. Further support for a correlation of MeCP2 expression with cell differentiation was observed in culture, where Western blot analysis during the in vitro differentiation of PC12, NG108-15, and SH-SY5Y cells revealed that MeCP2 levels increased as the cells acquired a more differentiated phenotype. This increase was associated with differentiation, as MeCP2 expression levels did not vary within different phases of the cell cycle. Taken together, these data support a role for MeCP2 in the establishment and/or maintenance of neuronal maturity. Copyright 2003 Wiley Periodicals, Inc. J Neurobiol 55: 86-96, 2003
机译:MeCP2基因的突变会引起Rett综合征,这是一种主要影响年轻女孩的神经系统疾病。为了深入了解MeCP2的正常功能,我们在晚期胚胎和围产期大脑发育过程中检查了其时空表达模式以及免疫反应性患病率。到胚胎晚期,在发育中的大鼠大脑的大多数区域都检测到了MeCP2 mRNA。显示最强mRNA表达的区域包括海马,皮质和小脑,并且在其他大多数大脑区域中也观察到中等表达。在蛋白质水平上,MeCP2在成年前脑神经元中强烈表达,但在星形胶质细胞中未检测到。在胚胎皮层中也观察到了MeCP2的无处不在的表达,因为约有三分之一的急性离解的胚胎第14天神经上皮细胞没有被MeCP2染色。为了测试MeCP2表达是否与神经元分化相关,在相同的急性分离皮质细胞中检测了MeCP2表达与前体细胞标记物Nestin或年轻的神经元标记物β-III微管蛋白的共定位。尽管在大约75%的β-III微管蛋白阳性细胞中检测到了较强的MeCP2表达,但只有约25%的巢蛋白阳性前体细胞是MeCP2阳性。在培养物中观察到对MeCP2表达与细胞分化的相关性的进一步支持,其中在PC12,NG108-15和SH-SY5Y细胞体外分化过程中进行的蛋白质印迹分析显示,随着细胞获得更高分化的表型,MeCP2水平升高。 。这种增加与分化有关,因为MeCP2表达水平在细胞周期的不同阶段没有变化。综上所述,这些数据支持MeCP2在神经元成熟的建立和/或维持中的作用。版权所有2003 Wiley Periodicals,Inc. J Neurobiol 55:86-96,2003

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