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A dynamic gradient of Wnt signaling controls initiation of neurogenesis in the mammalian cortex and cellular specification in the hippocampus

机译:Wnt信号的动态梯度控制哺乳动物皮质中神经发生的启动和海马中的细胞规格

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Neurogenesis in the developing neocortex is a strictly regulated process of cell division and differentiation. Here we report that a gradual retreat of canonical Wnt signaling in the cortex from lateral-to-medial and anterior-to-posterior is a prerequisite of neurogenesis. Ectopic expression of a beta-catenin/LEF1 fusion protein maintains active canonical Wnt signaling in the developing cortex and delays the expression onset of the neurogenic factors Pax6, Ngn2 and Tbr2 and subsequent neurogenesis. Contrary to this, conditional ablation of beta-catenin accelerates expression of the same neurogenic genes. Furthermore, we show that a sustained canonical Wnt activity in the lateral cortex gives rise to cells with hippocampal characteristics in the cortical plate at the expense of the cortical fate, and to cells with dentate gyrus characteristics in the hippocampus. This suggests that the dose of canonical Wnt signaling determines cellular fate in the developing cortex and hippocampus, and that recession of Wnt signaling acts as a morphogenetic gradient regulating neurogenesis in the cortex. 2007 Elsevier Inc. All rights reserved.
机译:发育中的新皮层中的神经发生是细胞分裂和分化的严格调控过程。在这里我们报告说,从外侧到内侧和从前到后,皮质中典型的Wnt信号逐渐退缩是神经发生的先决条件。 β-catenin/ LEF1融合蛋白的异位表达在发育中的皮层中维持活跃的经典Wnt信号传导,并延迟神经原性因子Pax6,Ngn2和Tbr2的表达开始以及随后的神经发生。与此相反,β-catenin的条件消融可加速相同神经源基因的表达。此外,我们表明,在外侧皮质中持续的经典Wnt活性以皮质命运为代价,在皮质板中形成具有海马特征的细胞,在海马体中具有齿状回特征的细胞。这表明经典的Wnt信号传导的剂量决定了发育中的皮质和海马中的细胞命运,而Wnt信号的衰退则充当了调节皮质中神经发生的形态发生梯度。 2007 Elsevier Inc.保留所有权利。

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