首页> 外文期刊>Genes and Development: a Journal Devoted to the Molecular Analysis of Gene Expression in Eukaryotes, Prokaryotes, and Viruses >Laminating the mammalian cortex during development: cell polarity protein function and Hippo signaling
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Laminating the mammalian cortex during development: cell polarity protein function and Hippo signaling

机译:在开发期间层压哺乳动物皮质:细胞极性蛋白质功能和河马信号传导

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During mammalian brain development, radial glial progenitors balance between proliferation and differentiation to generate the laminated cortical layers in a temporally precise fashion. Defects in the individual steps going into this complex organogenesis can result in cortical malformations and human nervous system disorders. In this issue of Genes & Development, Liu and colleagues (pp. 763-780) present experimental evidence that an evolutionarily conserved cellular polarity gene, Pard3 (partitioning-defective 3), controls the balance of radial glial proliferation and differentiation through interaction with the Hippo signal transduction pathway. Conditional deletion of Pard3 in the developing rodent cortex resulted in striking subcortical band heterotopia, reminiscent of a severe form of human cortical malformation.
机译:在哺乳动物脑发育期间,桡骨胶质祖细胞平衡增殖和分化之间的平衡,以逐时精确地产生层压皮质层。 进入该复杂的内组织的个体步骤中的缺陷可能导致皮质畸形和人的神经系统疾病。 在这个问题上,刘和同事(第763-780页)存在实验证据,即进化保守的细胞极性基因PARD3(分配缺陷3)控制径向胶质增殖和通过与之相互作用的平衡。 河马信号转导通路。 在发展啮齿动物皮层中的PARD3条件缺失导致皮带波动带异源性引起的,使心脏的严重形式的人体皮质畸形。

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