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Mecp2基因缺陷小鼠大脑皮质中神经元结构和突触形成的延迟成熟。

Delayed maturation of neuronal architecture and synaptogenesis in cerebral cortex of Mecp2-deficient mice.

作者信息

Fukuda Tetsuya, Itoh Masayuki, Ichikawa Tomio, Washiyama Kazuo, Goto Yu-ichi

机构信息

Department of Mental Retardation and Birth Defect Research, Institute of Neuroscience, National Center for Neurology and Psychiatry, Kodaira, Tokyo, Japan.

出版信息

J Neuropathol Exp Neurol. 2005 Jun;64(6):537-44. doi: 10.1093/jnen/64.6.537.

Abstract

We detected morphologic abnormalities in the cerebral cortex of Mecp2-hemizygous (Mecp2(-/y)) mice. The cortical thickness of both somatosensory and motor cortices in mutants did not increase after 4 weeks of age, as compared with that in wild-type male mice. The density of neurons in those areas was significantly higher in layers II/III and V of Mecp2(-/y) mice than in wild-type mice, particularly in layers II/ III after 4 weeks of age. In layer II/III of the somatosensory cortex of Mecp2(-/y) mice, the diameter of the apical dendrite was thin and the number of dendritic spines was small. Electron microscopy revealed that two-week-old mutants already had numerous premature postsynaptic densities. These results indicate that Mecp2(-/y) mice suffered delayed neuronal maturation of the cerebral cortex and that the initial neuronal changes were caused by premature synaptogenesis. Rett syndrome patients with a heterozygous mutation of Mecp2 display developmental disorders including cortical malfunctions such as mental retardation, autism, and epilepsy. Our results provide evidence of the similarity with Rett syndrome brains in some respects and suggest that MeCP2/Mecp2 plays some role in synaptogenesis.

摘要

我们在Mecp2半合子(Mecp2(-/y))小鼠的大脑皮层中检测到形态学异常。与野生型雄性小鼠相比,突变体小鼠体感皮层和运动皮层的皮层厚度在4周龄后未增加。Mecp2(-/y)小鼠的这些区域中,II/III层和V层的神经元密度显著高于野生型小鼠,尤其是在4周龄后的II/III层。在Mecp2(-/y)小鼠体感皮层的II/III层,顶端树突的直径较细,树突棘的数量较少。电子显微镜显示,两周龄的突变体已经有大量过早出现的突触后致密物。这些结果表明,Mecp2(-/y)小鼠大脑皮层的神经元成熟延迟,并且最初的神经元变化是由过早的突触形成引起的。患有Mecp2杂合突变的雷特综合征患者表现出发育障碍,包括智力迟钝、自闭症和癫痫等皮层功能障碍。我们的结果提供了在某些方面与雷特综合征大脑相似性的证据,并表明MeCP2/Mecp2在突触形成中发挥了一定作用。

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