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首页> 外文期刊>Molecular and cellular neurosciences >Impaired cerebellar development and deficits in motor coordination in mice lacking the neuronal protein BM88/Cend1
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Impaired cerebellar development and deficits in motor coordination in mice lacking the neuronal protein BM88/Cend1

机译:缺少神经元蛋白BM88 / Cend1的小鼠小脑发育受损和运动协调障碍

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摘要

During nervous system development, neural progenitors arise in proliferative zones, then exit the cell cycle and differentiate as they migrate away from these zones. The neuronal protein BM88/Cend1 has been implicated in coordination of cell cycle exit and differentiation of neuronal precursors. To further elucidate its function we generated Cend1 knock-out mice and analyzed their phenotype during postnatal cerebellar development. Cend1mice showed no overt abnormalities in the gross anatomy of the cerebellum or other brain regions. However, detailed analysis revealed alterations in cerebellar layering arising from increased proliferation of granule cell precursors, delayed radial granule cell migration and impaired Purkinje cell differentiation. Accordingly, expression of Patched1, cyclin D1, reelin and brain-derived neurotrophic factor, which correlate with morphological development of the cerebellum, was altered in Cend1 mice. The observed anatomical and molecular alterations were accompanied by deficits in motor behaviour. Our results suggest that Cend1 is required for normal cerebellar development.
机译:在神经系统发育过程中,神经祖细胞出现在增生区,然后离开细胞周期并随着它们从这些区迁移而分化。神经元蛋白BM88 / Cend1已参与细胞周期退出的协调和神经元前体的分化。为了进一步阐明其功能,我们生成了Cend1基因敲除小鼠,并在产后小脑发育过程中分析了它们的表型。 Cend1小鼠在小脑或其他大脑区域的大体解剖中未显示明显异常。然而,详细的分析显示小脑分层的改变是由于颗粒细胞前体的增殖增加,放射状颗粒细胞迁移延迟和浦肯野细胞分化受损而引起的。因此,在Cend1小鼠中,与小脑的形态发育相关的Patched1,cyclin D1,reelin和脑源性神经营养因子的表达发生了改变。观察到的解剖学和分子改变伴随着运动行为的缺陷。我们的结果表明,Cend1是正常小脑发育所必需的。

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