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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Sox21 promotes hippocampal adult neurogenesis via the transcriptional repression of the Hes5 gene
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Sox21 promotes hippocampal adult neurogenesis via the transcriptional repression of the Hes5 gene

机译:Sox21通过Hes5基因的转录抑制促进海马成年神经发生

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Despite the importance of the production of new neurons in the adult hippocampus, the transcription network governing this process remains poorly understood. The High Mobility Group (HMG)-box transcription factor, Sox2, and the cell surface activated transcriptional regulator, Notch, play important roles in CNS stem cells. Here, we demonstrate that another member of the SoxB (Sox1/Sox2/Sox3) transcription factor family, Sox21, is also a critical regulator of adult neurogenesis in mouse hippocampus. Loss of Sox21 impaired transition of progenitor cells from type 2a to type 2b, thereby reducing subsequent production of new neurons in the adult dentate gyrus. Analysis of the Sox21 binding sites in neural stem/progenitor cells indicated that the Notch-responsive gene, Hes5, was a target of Sox21. Sox21 repressed Hes5 gene expression at the transcriptional level. Simultaneous overexpression of Hes5 and Sox21 revealed that Hes5 was a downstream effector of Sox21 at the point where the Notch and Sox pathways intersect to control the number of neurons in the adult hippocampus. Therefore, Sox21 controls hippocampal adult neurogenesis via transcriptional repression of the Hes5 gene.
机译:尽管在成年海马中产生新的神经元很重要,但控制该过程的转录网络仍知之甚少。高迁移率族(HMG)框转录因子Sox2和细胞表面活化的转录调节因子Notch在CNS干细胞中起重要作用。在这里,我们证明了SoxB(Sox1 / Sox2 / Sox3)转录因子家族的另一个成员,Sox21,也是小鼠海马中成年神经发生的关键调节剂。 Sox21的丧失会损害祖细胞从2a型向2b型的转化,从而减少成年齿状回中新神经元的产生。对神经干/祖细胞中Sox21结合位点的分析表明,Notch反应基因Hes5是Sox21的靶标。 Sox21在转录水平上抑制了Hes5基因的表达。 Hes5和Sox21的同时过表达表明,在Notch和Sox通路相交以控制成年海马中神经元数量的点上,Hes5是Sox21的下游效应物。因此,Sox21通过Hes5基因的转录抑制控制海马成年神经发生。

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