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核因子 1B 调节皮质传出神经元的神经干细胞分化和轴突投射。

Nuclear factor one B regulates neural stem cell differentiation and axonal projection of corticofugal neurons.

机构信息

Department of Molecular, Cell and Developmental Biology, University of California, Santa Cruz, California, 95064.

出版信息

J Comp Neurol. 2014 Jan 1;522(1):6-35. doi: 10.1002/cne.23373.

DOI:10.1002/cne.23373
PMID:23749646
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4058429/
Abstract

During development of the cerebral cortex, neural stem cells divide to expand the progenitor pool and generate basal progenitors, outer radial glia, and cortical neurons. As these newly born neurons differentiate, they must properly migrate toward their final destination in the cortical plate, project axons to appropriate targets, and develop dendrites. However, a complete understanding of the precise genetic mechanisms regulating these steps is lacking. Here we show that a member of the nuclear factor one (NFI) family of transcription factors, NFIB, is essential for many of these processes in mice. We performed a detailed analysis of NFIB expression during cortical development, and investigated defects in cortical neurogenesis, neuronal migration, and differentiation in NfiB(-/-) brains. We found that NFIB is strongly expressed in radial glia and corticofugal neurons throughout cortical development. However, in NfiB(-/-) cortices, radial glia failed to generate outer radial glia, subsequently resulting in a loss of late basal progenitors. In addition, corticofugal neurons showed a severe loss of axonal projections, whereas late-born cortical neurons displayed defects in migration and ectopically expressed the early-born neuronal marker CTIP2. Furthermore, gene expression analysis, by RNA sequencing, revealed a misexpression of genes that regulate the cell cycle, neuronal differentiation and migration in NfiB(-/-) brains. Together these results demonstrate the critical functions of NFIB in regulating cortical development.

摘要

在大脑皮层发育过程中,神经干细胞分裂以扩大祖细胞池并产生基底祖细胞、外放射状胶质细胞和皮质神经元。随着这些新生成的神经元分化,它们必须正确地迁移到皮质板的最终目的地,将轴突投射到适当的靶标,并发育树突。然而,对于调节这些步骤的确切遗传机制的完整理解仍缺乏。在这里,我们表明,核因子之一(NFI)转录因子家族的成员 NFIB 对于小鼠的许多这些过程都是必需的。我们对 NFIB 在皮质发育过程中的表达进行了详细分析,并研究了 NfiB(-/-)大脑中皮质神经发生、神经元迁移和分化的缺陷。我们发现 NFIB 在整个皮质发育过程中在放射状胶质细胞和皮质神经元中强烈表达。然而,在 NfiB(-/-)皮质中,放射状胶质细胞未能产生外放射状胶质细胞,随后导致晚期基底祖细胞缺失。此外,皮质神经元的轴突投射严重缺失,而晚期出生的皮质神经元在迁移中表现出缺陷,并异位表达早期出生的神经元标志物 CTIP2。此外,通过 RNA 测序进行的基因表达分析显示,在 NfiB(-/-)大脑中,调节细胞周期、神经元分化和迁移的基因表达失调。这些结果共同表明 NFIB 在调节皮质发育中的关键作用。

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