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Molecular Control of Neurogenesis: A View from the Mammalian Cerebral Cortex

机译:神经发生的分子控制:哺乳动物大脑皮层的看法。

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摘要

The mammalian nervous system is the most complex organ of any living organism. How this complexity is generated during neural development is just beginning to be elucidated. This article discusses the signaling, transcriptional, and epigenetic mechanisms that are involved in neural development. The first part focuses on molecules that control neuronal numbers through regulation of the timing of onset of neurogenesis, the timing of the neuronal-to-glial switch, and the rate of progenitor proliferation. The second part focuses on molecules that control neuronal diversity by generating spatially or temporally distinct populations of neuronal progenitors. Most of the studies discussed in this article are focused on the developing mammalian cerebral cortex, because this is one of the main model systems for neural developmental studies and many of the mechanisms identified in this tissue also operate elsewhere in the developing brain and spinal cord.
机译:哺乳动物的神经系统是任何生物体中最复杂的器官。人们刚刚开始阐明在神经发育过程中如何产生这种复杂性。本文讨论了神经发育中涉及的信号传导,转录和表观遗传机制。第一部分着重于通过调节神经发生发作的时间,神经元至神经胶质转换的时间以及祖细胞增殖的速度来控制神经元数量的分子。第二部分着重于通过产生时空上不同的神经元祖细胞群来控制神经元多样性的分子。本文讨论的大多数研究都集中在哺乳动物大脑皮层的发育上,因为这是神经发育研究的主要模型系统之一,并且在该组织中确定的许多机制也正在发育中的大脑和脊髓的其他地方起作用。

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