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The chromatin remodeler CHD7 regulates adult neurogenesis via activation of SoxC transcription factors.

机译:染色质Remodeler CHD7通过激活SOXC转录因子来调节成人神经发生。

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Chromatin factors that regulate neurogenesis in the?central nervous system remain to be explored. Here, we demonstrate that the chromatin remodeler?chromodomain-helicase-DNA-binding protein 7 (CHD7), a protein frequently mutated in human CHARGE syndrome, is a master regulator of neurogenesis in mammalian brain. CHD7 is selectively expressed in actively dividing neural stem cells (NSCs) and progenitors. Genetic inactivation of CHD7 in NSCs leads to a reduction of neuronal differentiation and aberrant dendritic development of newborn neurons. Strikingly, physical exercise can rescue the CHD7 mutant phenotype in the adult hippocampal dentate gyrus. We further show that in NSCs, CHD7 stimulates the expression of Sox4 and Sox11 genes via remodeling their promoters to an open chromatin state. Our study demonstrates an essential role of CHD7 in activation of the neuronal differentiation program in NSCs, thus providing insights into epigenetic regulation of stem cell differentiation and molecular mechanism of human CHARGE syndrome.
机译:染色素因子调节中枢神经系统中神经发生的差异仍有待探索。在这里,我们证明了染色质重塑剂?染色体 - 螺旋酶-DNA结合蛋白7(CHD7),在人电荷综合征中经常突变的蛋白质,是哺乳动物大脑中神经发生的常规调节因素。 CHD7在积极分割神经干细胞(NSCs)和祖细胞中选择性地表达。 NSC中CHD7的遗传失活导致新生神经元神经元分化和异常树突发育的降低。尖锐的是,体育锻炼可以拯救成年海马齿状型回物中的CHD7突变表型。我们进一步表明,在NSCs中,CHD7通过将其启动子重塑为开放的染色质状态来刺激SOX4和SOX11基因的表达。我们的研究表明了CHD7在NSCs中神经元分化计划的激活中的基本作用,从而为人氏分子分化的表观遗传调节和人电荷综合征的分子机制提供了见解。

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