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发育中的大脑皮质中投射神经元身份的确定。

The determination of projection neuron identity in the developing cerebral cortex.

作者信息

Leone Dino P, Srinivasan Karpagam, Chen Bin, Alcamo Elizabeth, McConnell Susan K

机构信息

Department of Biology, Stanford University, Stanford, CA 94305, USA.

出版信息

Curr Opin Neurobiol. 2008 Feb;18(1):28-35. doi: 10.1016/j.conb.2008.05.006. Epub 2008 May 26.

Abstract

Here we review the mechanisms that determine projection neuron identity during cortical development. Pyramidal neurons in the mammalian cerebral cortex can be classified into two major classes: corticocortical projection neurons, which are concentrated in the upper layers of the cortex, and subcortical projection neurons, which are found in the deep layers. Early progenitor cells in the ventricular zone produce deep layer neurons that express transcription factors including Sox5, Fezf2, and Ctip2, which play important roles in the specification of subcortically projecting axons. Upper layer neurons are produced from progenitors in the subventricular zone, and the expression of Satb2 in these differentiating neurons is required for the formation of axonal projections that connect the two cerebral hemispheres. The Fezf2/Ctip2 and Satb2 pathways appear to be mutually repressive, thus ensuring that individual neurons adopt either a subcortical or callosal projection neuron identity at early times during development. The molecular mechanisms by which Satb2 regulates gene expression involves long-term epigenetic changes in chromatin configuration, which may enable cell fate decisions to be maintained during development.

摘要

在此,我们回顾在皮质发育过程中决定投射神经元身份的机制。哺乳动物大脑皮质中的锥体神经元可分为两大类:皮质-皮质投射神经元,集中在皮质上层;皮质下投射神经元,位于深层。脑室区的早期祖细胞产生表达转录因子(包括Sox5、Fezf2和Ctip2)的深层神经元,这些转录因子在皮质下投射轴突的特化中起重要作用。上层神经元由脑室下区的祖细胞产生,这些分化神经元中Satb2的表达对于连接两个大脑半球的轴突投射的形成是必需的。Fezf2/Ctip2和Satb2途径似乎相互抑制,从而确保单个神经元在发育早期采用皮质下或胼胝体投射神经元身份。Satb2调节基因表达的分子机制涉及染色质构型的长期表观遗传变化,这可能使细胞命运决定在发育过程中得以维持。

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