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AKT activation by N-cadherin regulates beta-catenin signaling and neuronal differentiation during cortical development

机译:N-钙粘着蛋白对AKT的激活在皮质发育过程中调节β-catenin信号传导和神经元分化

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Background During cerebral cortical development, neural precursor-precursor interactions in the ventricular zone neurogenic niche coordinate signaling pathways that regulate proliferation and differentiation. Previous studies with shRNA knockdown approaches indicated that N-cadherin adhesion between cortical precursors regulates β-catenin signaling, but the underlying mechanisms remained poorly understood. Results Here, with conditional knockout approaches, we find further supporting evidence that N-cadherin maintains β-catenin signaling during cortical development. Using shRNA to N-cadherin and dominant negative N-cadherin overexpression in cell culture, we find that N-cadherin regulates Wnt-stimulated β-catenin signaling in a cell-autonomous fashion. Knockdown or inhibition of N-cadherin with function-blocking antibodies leads to reduced activation of the Wnt co-receptor LRP6. We also find that N-cadherin regulates β-catenin via AKT, as reduction of N-cadherin causes decreased AKT activation and reduced phosphorylation of AKT targets GSK3β and β-catenin. Inhibition of AKT signaling in neural precursors in vivo leads to reduced β-catenin-dependent transcriptional activation, increased migration from the ventricular zone, premature neuronal differentiation, and increased apoptotic cell death. Conclusions These results show that N-cadherin regulates β-catenin signaling through both Wnt and AKT, and suggest a previously unrecognized role for AKT in neuronal differentiation and cell survival during cortical development.
机译:背景技术在大脑皮层发育过程中,心室区神经源性小生境中的神经前体-前体相互作用调节调节增殖和分化的信号传导途径。以前使用shRNA敲除方法进行的研究表明,皮质前体之间的N-钙粘着蛋白粘附可调节β-catenin信号传导,但其潜在机制仍知之甚少。结果在这里,使用条件敲除方法,我们发现了进一步的支持证据,即N-钙粘着蛋白在皮质发育过程中维持β-catenin信号传导。使用shRNA对细胞培养物中的N-钙粘着蛋白和显性负性N-钙粘着蛋白过度表达,我们发现N-钙粘着蛋白以细胞自主方式调节Wnt刺激的β-catenin信号传导。用功能阻断抗体抑制或抑制N-cadherin会导致Wnt共受体LRP6的激活减少。我们还发现,N-钙黏着蛋白通过AKT调节β-catenin,因为N-钙黏着蛋白的减少会导致AKT活化的减少和AKT靶标GSK3β和β-catenin的磷酸化的减少。体内神经先质中AKT信号的抑制导致减少的β-catenin依赖的转录激活,从心室区的迁移增加,神经元过早分化和凋亡细胞死亡的增加。结论这些结果表明,N-钙黏着蛋白通过Wnt和AKT调节β-catenin信号传导,并暗示了AKT在皮层发育过程中在神经元分化和细胞存活中的作用尚未被认识。

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