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Divergent lncRNAs Regulate Gene Expression and Lineage Differentiation in Pluripotent Cells

机译:不同的lncRNA调节多能细胞中的基因表达和谱系分化。

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Divergent lncRNAs that are transcribed in the opposite direction to nearby protein-coding genes comprise a significant proportion (similar to 20%) of total lncRNAs in mammalian genomes. Through genome-wide analysis, we found that the distribution of this lncRNA class strongly correlates with essential developmental regulatory genes. In pluripotent cells, divergent lncRNAs regulate the transcription of nearby genes. As an example, the divergent lncRNA Evx1as promotes transcription of its neighbor gene, EVX1, and regulates mesendodermal differentiation. At a single-cell level, early broad expression of Evx1as is followed by a rapid, high-level transcription of EVX1, supporting the idea that Evx1as plays an upstream role to facilitate EVX1 transcription. Mechanistically, Evx1as RNA binds to regulatory sites on chromatin, promotes an active chromatin state, and interacts with Mediator. Based on our analyses, we propose that the biological function of thousands of uncharacterized lncRNAs of this class may be inferred from the role of their neighboring adjacent genes.
机译:以与附近蛋白质编码基因相反的方向转录的不同lncRNAs在哺乳动物基因组中占总lncRNA的很大一部分(大约20%)。通过全基因组分析,我们发现该lncRNA类的分布与必需的发育调控基因密切相关。在多能细胞中,不同的lncRNA调节附近基因的转录。例如,不同的lncRNA Evx1as促进其邻近基因EVX1的转录,并调节中胚层分化。在单细胞水平上,Evx1as的早期广泛表达后是EVX1的快速,高水平转录,支持了Evx1as在促进EVX1转录中起上游作用的想法。从机理上讲,Evx1as RNA与染色质上的调控位点结合,促进染色质的活跃状态,并与介体相互作用。根据我们的分析,我们建议可以从其邻近的邻近基因的作用中推断出数千个此类的lncRNA的生物学功能。

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