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Oscillation of Cdc20–APC/C–mediated CAMDI stability is critical for cortical neuron migration

机译:CDC20-APC / C介导的CAMDI稳定性的振动对于皮质神经元迁移至关重要

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摘要

Radial migration during cortical development is required for formation of the six-layered structure of the mammalian cortex. Defective migration of neurons is linked to several developmental disorders such as autism and schizophrenia. A unique swollen structure called the dilation is formed in migrating neurons and is required for movement of the centrosome and nucleus. However, the detailed molecular mechanism by which this dilation forms is unclear. We report that CAMDI, a gene whose deletion is associated with psychiatric behavior, is degraded by cell division cycle protein 20 (Cdc20)–anaphase-promoting complex/cyclosome (APC/C) cell-cycle machinery after centrosome migration into the dilation in mouse brain development. We also show that CAMDI is restabilized in the dilation until the centrosome enters the dilation, at which point it is once again immediately destabilized. CAMDI degradation is carried out by binding to Cdc20–APC/C via the destruction box degron of CAMDI. CAMDI destruction box mutant overexpression inhibits dilation formation and neuronal cell migration via maintaining the stabilized state of CAMDI. These results indicate that CAMDI is a substrate of the Cdc20–APC/C system and that the oscillatory regulation of CAMDI protein correlates with dilation formation for proper cortical migration.
机译:在皮质开发期间形成径向迁移,以形成哺乳动物皮质的六层结构。神经元的缺陷迁移与诸如自闭症和精神分裂症等几种发育障碍相关联。一种称为扩张的独特肿胀结构形成在迁移神经元中,并且需要用于中核和核的运动所需的。然而,这种扩张形式不清楚的详细分子机制。我们报告了CAMDI,其缺失与精神病行为相关的基因,通过细胞分裂周期蛋白20(CDC20)降解 - 促进中心迁移到小鼠中的扩张后的促进复合体/ C)细胞周期机械大脑发展。我们还表明,CAMDI在扩张中恢复到扩张之前,直到Centrosome进入扩张,此时它再次立即破坏。通过通过CAMDI的破坏盒血管结合CDC20-APC / C,通过CAMDI的破坏折叠进行CAMDI降解。 CAMDI破坏箱突变体过表达通过维持CAMDI稳定状态抑制扩张形成和神经元细胞迁移。这些结果表明CAMDI是CDC20-APC / C系统的基材,并且CAMDI蛋白的振荡调节与扩张形成相关,以进行适当的皮质迁移。

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