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Pax6的开启和关闭控制着发育中脊髓神经元分化的节奏。

The on/off of Pax6 controls the tempo of neuronal differentiation in the developing spinal cord.

作者信息

Bel-Vialar Sophie, Medevielle François, Pituello Fabienne

机构信息

Centre de Biologie du Développement, CNRS UMR5547 Bât 4R3, Université Paul Sabatier, 118 route de Narbonne, 31062 Toulouse Cedex 09, France.

出版信息

Dev Biol. 2007 May 15;305(2):659-73. doi: 10.1016/j.ydbio.2007.02.012. Epub 2007 Feb 16.

Abstract

During neurogenesis, complex networks of genes act sequentially to control neuronal differentiation. In the neural tube, the expression of Pax6, a paired-box-containing gene, just precedes the appearance of the first post-mitotic neurons. So far, its only reported function in the spinal cord is in specifying subsets of neurons. Here we address its possible function in controlling the balance between proliferation and commitment of neural progenitors. We report that increasing Pax6 level is sufficient to push neural progenitors toward cell cycle exit and neuronal commitment via Neurogenin 2 (Ngn2) upregulation. However, neuronal precursors maintaining Pax6(On) fail to perform neuronal differentiation. Conversely, turning off Pax6 function in these precursors is sufficient to provoke premature differentiation and the number of differentiated neurons depends of the amount of Pax6 protein. Moreover, we found that Pax6 expression involves negative feedback regulation by Ngn2 and this repression is critical for the proneural activity of Ngn2. We present a model in which the level of Pax6 activity first conditions the moment when a given progenitor will leave the cell cycle and second, the moment when a selected neuronal precursor will irreversibly differentiate.

摘要

在神经发生过程中,复杂的基因网络依次发挥作用以控制神经元分化。在神经管中,含配对盒的基因Pax6的表达恰好在首个有丝分裂后神经元出现之前。到目前为止,其在脊髓中唯一报道的功能是确定神经元的亚群。在此,我们探讨其在控制神经祖细胞增殖与定向分化平衡方面的可能功能。我们报告,提高Pax6水平足以通过上调神经生成素2(Ngn2)促使神经祖细胞退出细胞周期并发生神经元定向分化。然而,维持Pax6(开启)状态的神经元前体细胞无法进行神经元分化。相反,在这些前体细胞中关闭Pax6功能足以引发过早分化,且分化神经元的数量取决于Pax6蛋白的量。此外,我们发现Pax6的表达涉及Ngn2的负反馈调节,且这种抑制对Ngn2的神经源性活性至关重要。我们提出一个模型,其中Pax6活性水平首先决定给定祖细胞离开细胞周期的时刻,其次决定选定的神经元前体细胞不可逆分化的时刻。

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