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SRSF3 promotes pluripotency through Nanog mRNA export and coordination of the pluripotency gene expression program

机译:SRSF3通过Nanog mRNA输出和多能性基因表达程序的协调来促进多能性

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The establishment and maintenance of pluripotency depend on precise coordination of gene expression. We establish serine-arginine-rich splicing factor 3 (SRSF3) as an essential regulator of RNAs encoding key components of the mouse pluripotency circuitry, SRSF3 ablation resulting in the loss of pluripotency and its overexpression enhancing reprogramming. Strikingly, SRSF3 binds to the core pluripotency transcription factor Nanog mRNA to facilitate its nucleo-cytoplasmic export independent of splicing. In the absence of SRSF3 binding, Nanog mRNA is sequestered in the nucleus and protein levels are severely downregulated. Moreover, SRSF3 controls the alternative splicing of the export factor Nxf1 and RNA regulators with established roles in pluripotency, and the steady-state levels of mRNAs encoding chromatin modifiers. Our investigation links molecular events to cellular functions by demonstrating how SRSF3 regulates the pluripotency genes and uncovers SRSF3-RNA interactions as a critical means to coordinate gene expression during reprogramming, stem cell self-renewal and early development.
机译:多能性的建立和维持取决于基因表达的精确协调。我们建立富含丝氨酸精氨酸的剪接因子3(SRSF3)作为编码小鼠多能性电路关键成分的RNA的基本调节剂,SRSF3消融导致多能性的丧失及其过表达增强了重编程。令人惊讶的是,SRSF3与核心多能转录因子Nanog mRNA结合,以促进其核质输出,而与剪接无关。在没有SRSF3结合的情况下,Nanog mRNA被隔离在细胞核中,蛋白质水平被严重下调。此外,SRSF3控制出口因子Nxf1和RNA调节剂的替代剪接,在多能性和编码染色质修饰剂的mRNA的稳态水平方面已确立作用。我们的研究通过证明SRSF3如何调控多能性基因并揭示SRSF3-RNA相互作用作为协调重编程,干细胞自我更新和早期发育过程中基因表达的关键手段,从而将分子事件与细胞功能联系起来。

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