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Effects of let-7b and TLX on the proliferation and differentiation of retinal progenitor cells in vitro

机译:Let-7B和TLX对体外视网膜祖细胞增殖和分化的影响

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MicroRNAs manifest significant functions in brain neural stem cell (NSC) self-renewal and differentiation through the post-transcriptional regulation of neurogenesis genes. Let-7b is expressed in the mammalian brain and regulates NSC proliferation and differentiation by targeting the nuclear receptor TLX, which is an essential regulator of NSC self-renewal. Whether let-7b and TLX act as important regulators in retinal progenitor cell (RPC) proliferation and differentiation remains unknown. Here, our data show that let-7b and TLX play important roles in controlling RPC fate determination in vitro. Let-7b suppresses TLX expression to negatively regulate RPC proliferation and accelerate the neuronal and glial differentiation of RPCs. The overexpression of let-7b downregulates TLX levels in RPCs, leading to reduced RPC proliferation and increased neuronal and glial differentiation, whereas antisense knockdown of let-7b produces robust TLX expression,enhanced RPC proliferation and decreased differentiation. Moreover, the inhibition of endogenous TLX by small interfering RNA suppresses RPC proliferation and promotes RPC differentiation. Furthermore, overexpression of TLX rescues let-7b-induced proliferation deficiency and weakens the RPC differentiation enhancement caused by let-7b alone. These results suggest that let-7b, by forming a negative feedback loop with TLX, provides a novel model to regulate the proliferation and differentiation of retinal progenitors in vitro.
机译:MicroRNAS在脑神经干细胞(NSC)自我更新和分化通过神经发生基因的后转录调节的显着功能。 Let-7B在哺乳动物脑中表达,并通过靶向核受体TLX来调节NSC增殖和分化,这是NSC自我更新的必要调节因素。如果让-7B和TLX作为视网膜祖细胞(RPC)增殖和分化的重要调节剂仍然未知。在这里,我们的数据显示,Let-7B和TLX在体外控制RPC命运测定时发挥重要作用。 Let-7B抑制TLX表达以负调节RPC增殖并加速RPC的神经元和胶质分化。 Let-7B的过表达在RPC中降低TLX水平,导致RPC增殖降低和神经元和胶质分化的增加,而Let-7B的反义敲低产生稳健的TLX表达,增强的RPC增殖和降低降低。此外,小干扰RNA对内源TLX的抑制抑制了RPC增殖并促进了RPC分化。此外,TLX拯救的过表达拯救了Let-7B诱导的增殖缺乏,并削弱了单独的Let-7B引起的RPC分化增强。这些结果表明,通过形成具有TLX的负反馈回路的Let-7B提供了一种新型模型,以调节体外视网膜祖细胞的增殖和分化。

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