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Rho GTPase 蛋白在中枢神经系统神经元迁移中的作用。

The role of Rho GTPase proteins in CNS neuronal migration.

机构信息

Laboratory of Developmental Neurobiology, The Rockefeller University, NY 10065, USA.

出版信息

Dev Neurobiol. 2011 Jun;71(6):528-53. doi: 10.1002/dneu.20850.

Abstract

The architectonics of the mammalian brain arise from a remarkable range of directed cell migrations, which orchestrate the emergence of cortical neuronal layers and pattern brain circuitry. At different stages of cortical histogenesis, specific modes of cell motility are essential to the stepwise formation of cortical architecture. These movements range from interkinetic nuclear movements in the ventricular zone, to migrations of early-born, postmitotic polymorphic cells into the preplate, to the radial migration of precursors of cortical output neurons across the thickening cortical wall, and the vast, tangential migrations of interneurons from the basal forebrain into the emerging cortical layers. In all cases, actomyosin motors act in concert with cell adhesion receptor systems to provide the force and traction needed for forward movement. As key regulators of actin and microtubule cytoskeletons, cell polarity, and adhesion, the Rho GTPases play critical roles in CNS neuronal migration. This review will focus on the different types of migration in the developing neocortex and cerebellar cortex, and the role of the Rho GTPases, their regulators and effectors in these CNS migrations, with particular emphasis on their involvement in radial migration.

摘要

哺乳动物大脑的结构从一系列显著的定向细胞迁移中产生,这些迁移协调了皮质神经元层的出现和大脑回路的模式形成。在皮质发生的不同阶段,特定的细胞运动模式对于皮质结构的逐步形成至关重要。这些运动范围从室管区的核间运动,到早期出生的、有丝分裂后多形细胞向基板的迁移,再到皮质输出神经元前体在增厚的皮质壁上的放射状迁移,以及从基底前脑到新出现的皮质层的大量、切线的中间神经元迁移。在所有情况下,肌动球蛋白马达与细胞粘附受体系统协同作用,为向前运动提供所需的力和牵引力。作为肌动蛋白和微管细胞骨架、细胞极性和粘附的关键调节剂,Rho GTPases 在中枢神经系统神经元迁移中发挥着关键作用。本综述将重点介绍发育中的新皮质和小脑皮质的不同迁移类型,以及 Rho GTPases 及其在这些中枢神经系统迁移中的调节剂和效应物的作用,特别强调它们在放射状迁移中的参与。

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