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Drebrin-like (Dbnl) 通过调控发育中大脑皮层的 N-钙黏蛋白表达来控制神经元迁移。

Drebrin-like (Dbnl) Controls Neuronal Migration via Regulating N-Cadherin Expression in the Developing Cerebral Cortex.

机构信息

Department of Anatomy, Keio University School of Medicine, Tokyo 160-8582, Japan, and.

Department of Neuropathology, Medical Research Institute, Center for Brain Integration Research, Tokyo Medical and Dental University, Tokyo 113-8510, Japan.

出版信息

J Neurosci. 2019 Jan 23;39(4):678-691. doi: 10.1523/JNEUROSCI.1634-18.2018. Epub 2018 Nov 30.

Abstract

The actin cytoskeleton is crucial for neuronal migration in the mammalian developing cerebral cortex. The adaptor protein Drebrin-like (Dbnl) plays important roles in reorganization of the actin cytoskeleton, dendrite formation, and endocytosis by interacting with F-actin, cobl, and dynamin. Although Dbnl is known to be expressed in the brain, the functions of this molecule during brain development are largely unknown. In this study, to examine the roles of Dbnl in the developing cerebral cortex, we conducted experiments using mice of both sexes with knockdown of Dbnl, effected by electroporation, in the migrating neurons of the embryonic cortex. Time-lapse imaging of the Dbnl-knockdown neurons revealed that the presence of Dbnl is a prerequisite for appropriate formation of processes in the multipolar neurons in the multipolar cell accumulation zone or the deep part of the subventricular zone, and for neuronal polarization and entry into the cortical plate. We found that Dbnl knockdown decreased the amount of N-cadherin protein expressed on the plasma membrane of the cortical neurons. The defect in neuronal migration caused by Dbnl knockdown was rescued by moderate overexpression of N-cadherin and αN-catenin or by transfection of the phospho-mimic form (Y337E, Y347E), but not the phospho-resistant form (Y337F, Y347F), of Dbnl. These results suggest that Dbnl controls neuronal migration, neuronal multipolar morphology, and cell polarity in the developing cerebral cortex via regulating N-cadherin expression. Disruption of neuronal migration can cause neuronal disorders, such as lissencephaly and subcortical band heterotopia. During cerebral cortical development, the actin cytoskeleton plays a key role in neuronal migration; however, the mechanisms of regulation of neuronal migration by the actin cytoskeleton still remain unclear. Herein, we report that the novel protein Dbnl, an actin-binding protein, controls multiple events during neuronal migration in the developing mouse cerebral cortex. We also showed that this regulation is mediated by phosphorylation of Dbnl at tyrosine residues 337 and 347 and αN-catenin/N-cadherin, suggesting that the Dbnl-αN-catenin/N-cadherin pathway is important for neuronal migration in the developing cortex.

摘要

细胞骨架对于哺乳动物发育中的大脑皮层中的神经元迁移至关重要。衔接蛋白 Drebrin 样蛋白(Dbnl)通过与 F-肌动蛋白、cobl 和 dynamin 相互作用,在肌动蛋白细胞骨架的重组、树突形成和胞吞作用中发挥重要作用。尽管已知 Dbnl 在大脑中表达,但该分子在大脑发育过程中的功能在很大程度上尚不清楚。在这项研究中,为了研究 Dbnl 在发育中的大脑皮层中的作用,我们使用电穿孔在胚胎皮层的迁移神经元中敲低 Dbnl 的雄性和雌性小鼠进行了实验。对 Dbnl 敲低神经元的延时成像显示,Dbnl 的存在是多极神经元在多极细胞堆积区或侧脑室下区深部形成适当突起以及神经元极化和进入皮质板的前提条件。我们发现 Dbnl 敲低会降低皮质神经元质膜上 N-钙粘蛋白蛋白的表达量。Dbnl 敲低引起的神经元迁移缺陷可以通过适度过表达 N-钙粘蛋白和αN-连环蛋白或转染 Dbnl 的磷酸模拟形式(Y337E,Y347E)得到挽救,但不能通过磷酸化抗性形式(Y337F,Y347F)得到挽救。这些结果表明,Dbnl 通过调节 N-钙粘蛋白的表达来控制发育中的大脑皮层中的神经元迁移、神经元多极形态和细胞极性。神经元迁移障碍可导致神经元疾病,如无脑回和皮质下带异位。在大脑皮层发育过程中,细胞骨架在神经元迁移中起着关键作用;然而,细胞骨架调节神经元迁移的机制仍不清楚。在此,我们报告了一种新型蛋白 Dbnl,一种肌动蛋白结合蛋白,可控制发育中的小鼠大脑皮层中神经元迁移的多个事件。我们还表明,这种调节是通过 Dbnl 酪氨酸残基 337 和 347 的磷酸化和αN-连环蛋白/N-钙粘蛋白介导的,这表明 Dbnl-αN-连环蛋白/N-钙粘蛋白途径对发育中的皮质中的神经元迁移很重要。

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