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Chd7 cooperates with Sox10 and regulates the onset of CNS myelination and remyelination

机译:Chd7与Sox10合作并调节CNS髓鞘再生和髓鞘再生

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Mutations in CHD7, encoding ATP-dependent chromodomain helicase DNA-binding protein 7, in CHARGE syndrome lead to multiple congenital anomalies, including craniofacial malformations, neurological dysfunction and growth delay. Mechanisms underlying the CNS phenotypes remain poorly understood. We found that Chd7 is a direct transcriptional target of oligodendrogenesis-promoting factors Olig2 and Smarca4/Brg1 and is required for proper onset of CNS myelination and remyelination. Genome-occupancy analyses in mice, coupled with transcriptome profiling, revealed that Chd7 interacted with Sox10 and targeted the enhancers of key myelinogenic genes. These analyses identified previously unknown Chd7 targets, including bone formation regulators Osterix (also known as Sp7) and Creb3l2, which are also critical for oligodendrocyte maturation. Thus, Chd7 coordinates with Sox10 to regulate the initiation of myelinogenesis and acts as a molecular nexus of regulatory networks that account for the development of a seemingly diverse array of lineages, including oligodendrocytes and osteoblasts, pointing to previously uncharacterized Chd7 functions in white matter pathogenesis in CHARGE syndrome.
机译:CHARGE综合征中编码ATP依赖型染色体域解旋酶DNA结合蛋白7的CHD7突变导致多种先天性异常,包括颅面畸形,神经功能障碍和生长延迟。中枢神经系统表型的潜在机制仍知之甚少。我们发现Chd7是少突胶质生成促进因子Olig2和Smarca4 / Brg1的直接转录靶标,并且是中枢神经系统髓鞘再生和髓鞘再生的正确开始所必需的。小鼠中的基因组占有率分析以及转录组谱分析表明,Chd7与Sox10相互作用并靶向关键的髓鞘生成基因的增强子。这些分析确定了以前未知的Chd7靶标,包括骨形成调节剂Osterix(也称为Sp7)和Creb3l2,这对于少突胶质细胞的成熟也至关重要。因此,Chd7与Sox10协调以调节髓鞘形成的开始,并充当调节网络的分子联系,这些网络解释了看似多样的家族谱系的发展,包括少突胶质细胞和成骨细胞,指出了以前Chd7在白质发病机制中未表征的功能。 CHARGE综合征。

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