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Noncanonical function of DGCR8 controls mESC exit from pluripotency

机译:DGCR8控制MESC从多能性出口的非碳功能

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Mouse embryonic stem cells (mESCs) deficient for DGCR8, a key component of the microprocessor complex, present strong differentiation defects. However, the exact reasons impairing their commitment remain elusive. The analysis of newly generated mutant mESCs revealed that DGCR8 is essential for the exit from the pluripotency state. To dissociate canonical versus noncanonical functions of DGCR8, we complemented the mutant mESCs with a phosphomutant DGCR8, which restored microRNA levels but did not rescue the exit from pluripotency defect. Integration of omics data and RNA immunoprecipitation experiments established DGCR8 as a direct interactor of Tcf7l1 mRNA, a core component of the pluripotency network. Finally, we found that DGCR8 facilitated the splicing of Tcf7l1, an event necessary for the differentiation of mESCs. Our data reveal a new noncanonical function of DGCR8 in the modulation of the alternative splicing of Tcf7l1 mRNA in addition to its established function in microRNA biogenesis.
机译:小鼠胚胎干细胞(MESCS)缺乏DGCR8,微处理器复合物的关键部件,具有强烈的分化缺陷。然而,损害其承诺的确切原因仍然难以捉摸。对新生成的突变体MESC的分析显示,DGCR8对于从多能性状态的出口是必不可少的。为了解离规范与DGCR8的非甘露透官能团,我们将突变体MESC与磷酸化剂DGCR8相提并论,其恢复了MicroRNA水平,但未拯救从多能性缺陷的出口。 OMICS数据和RNA免疫沉淀实验的整合建立了DGCR8作为TCF7L1 mRNA的直接交互式,多能网多能网的核心组分。最后,我们发现DGCR8促进了TCF7L1的拼接,这是蒙西斯分化所必需的事件。我们的数据揭示了DGCR8的一种新的非甘露吞噬功能在调制TCF7L1 mRNA的替代拼接外,除了其在MicroRNA生物发生中的既定功能外。

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