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Posterior Neocortex-Specific Regulation of Neuronal Migration by CEP85L Identifies Maternal Centriole-Dependent Activation of CDK5

机译:CEP85L的神经元迁移的后雷雷科特的特异性调节鉴定了CDK5的母体偏胆依赖性活化

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Genes mutated in human neuronal migration disorders encode tubulin proteins and a variety of tubulin-binding and -regulating proteins, but it is very poorly understood how these proteins function together to coordinate migration. Additionally, the way in which regional differences in neocortical migration are controlled is completely unknown. Here we describe a new syndrome with remarkably region-specific effects on neuronal migration in the posterior cortex, reflecting de novo variants in CEP85L. We show that CEP85L is required cell autonomously in vivo and in vitro for migration, that it localizes to the maternal centriole, and that it forms a complex with many other proteins required for migration, including CDK5, LIS1, NDE1, KIF2A, and DYNC1H1. Loss of CEP85L disrupts CDK5 localization and activation, leading to centrosome disorganization and disrupted microtubule cytoskeleton organization. Together, our findings suggest that CEP85L highlights a complex that controls CDK5 activity to promote neuronal migration.
机译:在人神经元迁移障碍中突变的基因编码管蛋白蛋白和各种小管蛋白结合和 - 制造蛋白质,但是本蛋白质如何共同坐标以协调迁移。此外,控制新生素迁移区域差异的方式是完全未知的。在这里,我们描述了一种新的综合征,对后皮质中的神经元迁移具有显着的区域特异性效果,反映了Cep85L中的De Novo变体。我们表明CEP85L在体内和体外迁移中需要CEP85L,它定位于母体厘氢胶,并且它形成了许多迁移所需的许多其他蛋白质,包括CDK5,LIS1,NDE1,KIF2A和DYNC1H1。 CEP85L的丧失扰乱了CDK5定位和激活,导致Centroosome紊乱和中断的微管细胞骨架组织。我们的研究结果表明Cep85L突出了一个复杂的复杂,控制CDK5活动,以促进神经元迁移。

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