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Carm1 regulates Pax7 transcriptional activity through MLL1/2 recruitment during asymmetric satellite stem cell divisions

机译:Carm1通过不对称卫星干细胞分裂过程中的MLL1 / 2募集调节Pax7转录活性

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摘要

In skeletal muscle, asymmetrically dividing satellite stem cells give rise to committed satellite cells that transcribe the myogenic determination factor Myf5, a Pax7-target gene. We identified the arginine methyltransferase Carm1 as a Pax7 interacting protein and found that Carm1 specifically methylates multiple arginines in the N terminus of Pax7. Methylated Pax7 directly binds the C-terminal cleavage forms of the trithorax proteins MLL1/2 resulting in the recruitment of the ASH2L:MLL1/2:WDR5:RBBP5 histone H3K4 methyltransferase complex to regulatory enhancers and the proximal promoter of Myf5. Finally, Carm1 is required for the induction of de novo Myf5 transcription following asymmetric satellite stem cell divisions. We defined the C-terminal MLL region as a reader domain for the recognition of arginine methylated proteins such as Pax7. Thus, arginine methylation of Pax7 by Carm1 functions as a molecular switch controlling the epigenetic induction of Myf5 during satellite stem cell asymmetric division and entry into the myogenic program.
机译:在骨骼肌中,不对称分裂的卫星干细胞产生定型的卫星细胞,该细胞转录成肌决定因子Myf5(一种Pax7靶基因)。我们将精氨酸甲基转移酶Carm1确定为Pax7相互作用蛋白,并发现Carm1在Pax7的N末端特异地甲基化了多个精氨酸。甲基化的Pax7直接结合三胸蛋白质MLL1 / 2的C末端裂解形式,导致ASH2L:MLL1 / 2:WDR5:RBBP5组蛋白H3K4甲基转移酶复合物募集到调节增强子和Myf5的近端启动子。最后,在不对称卫星干细胞分裂后,从头诱导Myf5转录需要Carm1。我们将C末端MLL区域定义为识别精氨酸甲基化蛋白(例如Pax7)的阅读器域。因此,Carm1对Pax7的精氨酸甲基化起着分子开关的作用,该分子开关在卫星干细胞不对称分裂并进入成肌程序期间控制Myf5的表观遗传学诱导。

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