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首页> 外文期刊>Science Advances >Arginine methylation expands the regulatory mechanisms and extends the genomic landscape under E2F control
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Arginine methylation expands the regulatory mechanisms and extends the genomic landscape under E2F control

机译:精氨酸甲基化扩展了调控机制并扩展了E2F控制下的基因组格局

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E2F is a family of master transcription regulators involved in mediating diverse cell fates. Here, we show that residue-specific arginine methylation (meR) by PRMT5 enables E2F1 to regulate many genes at the level of alternative RNA splicing, rather than through its classical transcription-based mechanism. The p100/TSN tudor domain protein reads the meR mark on chromatin-bound E2F1, allowing snRNA components of the splicing machinery to assemble with E2F1. A large set of RNAs including spliced variants associate with E2F1 by virtue of the methyl mark. By focusing on the deSUMOylase SENP7 gene, which we identified as an E2F target gene, we establish that alternative splicing is functionally important for E2F1 activity. Our results reveal an unexpected consequence of arginine methylation, where reader-writer interplay widens the mechanism of control by E2F1, from transcription factor to regulator of alternative RNA splicing, thereby extending the genomic landscape under E2F1 control.
机译:E2F是涉及调解多种细胞命运的主要转录调节子家族。在这里,我们显示PRMT5的残基特异性精氨酸甲基化(meR)使E2F1在替代RNA剪接水平上调节许多基因,而不是通过其经典的基于转录的机制进行调节。 p100 / TSN都铎结构域蛋白读取与染色质结合的E2F1的meR标记,从而使剪接机器的snRNA组件可与E2F1组装在一起。带有剪接变体的大量RNA通过甲基标记与E2F1结合。通过专注于我们确定为E2F目标基因的deSUMOylase SENP7基因,我们建立了选择性剪接对于E2F1活性在功能上很重要。我们的结果揭示了精氨酸甲基化的意外结果,其中读者与作者的相互作用扩大了E2F1的控制机制,从转录因子到替代RNA剪接的调节剂,从而扩展了E2F1控制下的基因组格局。

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