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Brain-Derived Neurotrophic Factor Participates in Determination of Neuronal Laminar Fate in the Developing Mouse Cerebral Cortex

机译:脑源性神经营养因子参与确定发育中的小鼠脑皮质中神经元层状的命运。

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摘要

Lamina formation in the developing cerebral cortex requires precisely regulated generation and migration of the cortical progenitor cells. To test the possible involvement of brain-derived neurotrophic factor (BDNF) in the formation of the cortical lamina, we investigated the effects of BDNF protein and anti-BDNF antibody separately administered into the telencephalic ventricular space of 13.5-d-old mouse embryos. BDNF altered the position, gene-expression properties, and projections of neurons otherwise destined for layer IV to those of neurons for the deeper layers, V and VI, of the cerebral cortex, whereas anti-BDNF antibody changed some of those of neurons of upper layers II/III. Additional analysis revealed that BDNF altered the laminar fate of neurons only if their parent progenitor cells were exposed to it at approximately S-phase and that it hastened the timing of the withdrawal of their daughter neurons from the ventricular proliferating pool by accelerating the completion of S-phase, downregulation of the Pax6 (paired box gene 6) expression, an essential transcription factor for generation of the upper layer neurons, and interkinetic nuclear migration of cortical progenitors in the ventricular zone. These observations suggest that BDNF participates in the processes forming the neuronal laminas in the developing cerebral cortex. BDNF can therefore be counted as one of the key extrinsic factors that regulate the laminar fate of cortical neurons.
机译:发育中的大脑皮层的层状形成需要精确调节皮质祖细胞的生成和迁移。为了测试脑源性神经营养因子(BDNF)可能参与皮层的形成,我们调查了分别给予13.5 d大小鼠胚胎的脑室空间中BDNF蛋白和抗BDNF抗体的作用。 BDNF改变了原本预定用于第IV层的神经元的位置,基因表达特性和投射,改变了大脑皮层的更深层V和VI的神经元,而抗BDNF抗体改变了上层神经元的某些位置II / III层。进一步的分析表明,BDNF仅在其父祖细胞在大约S期暴露于神经元时才改变神经元的层状命运,并且它通过加速S的完成来加快其子神经元从心室增殖池中退出的时间。阶段,Pax6(成对框基因6)表达的下调,上层神经元的产生所必需的转录因子以及心室区皮层祖细胞的运动间核迁移。这些观察结果表明,BDNF参与了发育中的大脑皮层中形成神经元层的过程。因此,BDNF可被视为调节皮层神经元层状命运的关键外在因素之一。

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