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Brf1 post-transcriptionally regulates pluripotency and differentiation responses downstream of Erk MAP Kinase

机译:Brf1转录后调节Erk map激酶下游的多能性和分化反应

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摘要

FGF/Erk MAP Kinase Signaling is a central regulator of mouse embryonic stem cell (mESC) self-renewal, pluripotency and differentiation. However, the mechanistic connection between this signaling pathway activity and the gene circuits stabilizing mESCs in vitro remain unclear. Here we show that FGF signaling post-transcriptionally regulates the mESC transcription factor network by controlling the expression of Brf1 (zfp36l1), an AU-rich element mRNA binding protein. Changes in Brf1 level disrupts the expression of core pluripotency-associated genes and attenuates mESC self-renewal without inducing differentiation. These regulatory effects are mediated by rapid and direct destabilization of Brf1 targets, such as Nanog mRNA. Interestingly, enhancing Brf1 expression does not compromise mESC pluripotency, but does preferentially regulate differentiation to mesendoderm by accelerating the expression of primitive streak markers. Together, these studies demonstrate that FGF signals utilize targeted mRNA degradation by Brf1 to enable rapid post-transcriptional control of gene expression.
机译:FGF / Erk MAP激酶信号传导是小鼠胚胎干细胞(mESC)自我更新,多能性和分化的主要调节器。然而,该信号通路活性与体外稳定mESC的基因回路之间的机制联系尚不清楚。在这里,我们显示FGF信号转导通过控制Brf1(zfp36l1)(一种富含AU的元素mRNA结合蛋白)的表达在转录后调节mESC转录因子网络。 Brf1水平的变化破坏了核心多能性相关基因的表达,并减弱了mESC的自我更新而不诱导分化。这些调节作用是通过Brf1靶标(例如Nanog mRNA)的快速直接破坏来介导的。有趣的是,增强Brf1表达不会损害mESC多能性,但会通过加速原始条纹标记的表达来优先调节中胚层的分化。总之,这些研究表明FGF信号利用Brf1靶向的mRNA降解,从而能够快速转录后控制基因表达。

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    Tan Frederick Eng How;

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  • 年度 2014
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