Meningeal Bmps Regulate Cortical Layer Formation.

Youngshik Choe, Samuel J Pleasure
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引用次数: 13

Abstract

Neuronal connectivity in the cortex is determined by the laminar positioning of neurons. An important determinant of laminar positioning is likely to be the control of leading process behavior during migration, maintaining their tips directed toward the pia. In this study, we provide evidence that pial bone morphogenetic protein (Bmp) signaling regulates cortical neuronal migration during cortical layer formation. Specific disruption of pial Bmp ligands impaired the positioning of early-born neurons in the deep layer; further, cell-autonomous inhibition of Smad4, a core nuclear factor mediating Bmp signaling, in the cortical radial glial cells or postmitotic cortical neurons also produced neuronal migration defects that blurred the cortical layers. We found that leading processes were abnormal and that this was accompanied by excess dephosphorylated cofilin-1, an actin-severing protein, in Smad4 mutant neurons. This suggested that regulation of cofilin-1 might transduce Bmp signaling in the migrating neurons. Ectopic expression of a phosphorylation-defective form of cofilin-1 in the late-born wild-type neurons led them to stall in the deep layer, similar to the Smad4 mutant neurons. Expression of a phosphomimetic variant of cofilin-1 in the Smad4 mutant neurons rescued the migration defects. This suggests that cofilin-1 activity underlies Bmp-mediated cortical neuronal migration. This study shows that cofilin-1 mediates pial Bmp signaling during the positioning of cortical neurons and the formation of cortical layers.

Abstract Image

Abstract Image

Abstract Image

脑膜bmp调节皮质层的形成。
皮层中的神经元连接是由神经元的层状定位决定的。层流定位的一个重要决定因素可能是在迁移过程中对引导过程行为的控制,保持它们的尖端指向pia。在这项研究中,我们提供的证据表明,在皮质层形成过程中,骨形态发生蛋白(Bmp)信号调节皮质神经元的迁移。枕部Bmp配体的特异性破坏破坏了早生神经元在深层的定位;此外,在皮质放射状胶质细胞或有丝分裂后皮质神经元中,细胞自主抑制Smad4(一种介导Bmp信号传导的核心核因子)也会产生神经元迁移缺陷,使皮质层模糊。我们发现,在Smad4突变的神经元中,先导过程异常,并伴有过量的去磷酸化cofilin-1(一种切断肌动蛋白的蛋白)。这表明cofilin-1的调控可能在迁移神经元中转导Bmp信号。在晚出生的野生型神经元中,磷酸化缺陷形式的cofilin-1的异位表达导致它们在深层停滞,类似于Smad4突变神经元。在Smad4突变的神经元中,cofilin-1的一种拟磷变体的表达挽救了迁移缺陷。这表明cofilin-1活性是bmp介导的皮层神经元迁移的基础。本研究表明,cofilin-1在皮质神经元定位和皮质层形成过程中介导枕部Bmp信号。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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