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CARM1 regulates astroglial lineage through transcriptional regulation of Nanog and posttranscriptional regulation by miR92a

机译:CARM1通过Nanog的转录调控和miR92a的转录后调控来调控星形胶质细胞谱系。

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Coactivator-associated arginine methyltransferase (CARM1/PRMT4)–mediated transcriptional coactivation and arginine methylation is known to regulate various tissue-specific differentiation events. Although CARM1 is expressed in the neural crest region in early development, coinciding with early neuronal progenitor specification, the role of CARM1 in any neuronal developmental pathways has been unexplored. Using a specific small-molecule inhibitor of CARM1-mediated H3R17 methylation in human embryonic stem cell line, we find that H3R17 methylation contributes to the maintenance of the astroglial cell population. A network of regulation was observed on the miR92a promoter by which H3R17-responsive Nanog bound to the miR92a promoter decreased upon inhibition, resulting in an abnormal gene expression program influencing the glial lineage. This was also true in zebrafish, in which, with the help of CARM1 inhibitor and CARM1 morpholinos, we show that inhibition of H3R17 methylation results in defective glial cell morphology and a sensory defect in a subpopulation. A gain-of-function strategy in which mCARM1 was introduced in the morpholino-treated embryos exhibited recovery of the sensory defect phenotype. This study thus establishes the functional cooperation between arginine methylation and microRNA expression in the neuronal developmental process, with potential implications in sensory development pathways.
机译:协同激活相关的精氨酸甲基转移酶(CARM1 / PRMT4)介导的转录共激活和精氨酸甲基化可调节各种组织特异性分化事件。尽管CARM1在早期发育过程中在神经c区域表达,但与早期神经元祖细胞规范相吻合,但尚未探讨CARM1在任何神经元发育途径中的作用。在人类胚胎干细胞系中使用CARM1介导的H3R17甲基化的特定小分子抑制剂,我们发现H3R17甲基化有助于星形胶质细胞群的维持。在miR92a启动子上观察到一个调节网络,通过该网络,与miR92a启动子结合的H3R17反应性Nanog在抑制后会减少,从而导致影响神经胶质谱系的异常基因表达程序。在斑马鱼中也是如此,在斑马鱼中,借助CARM1抑制剂和吗啉吗啉代,我们证明抑制H3R17甲基化会导致神经胶质细胞形态缺陷和亚群中的感觉缺陷。在吗啉代处理的胚胎中引入了mCARM1的功能获得策略显示了感觉缺陷表型的恢复。因此,这项研究建立了精氨酸甲基化与microRNA在神经元发育过程中的表达之间的功能合作,对感觉发育途径具有潜在的影响。

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