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Lysine-specific histone demethylase 1 inhibition promotes reprogramming by facilitating the expression of exogenous transcriptional factors and metabolic switch

机译:赖氨酸特异性组蛋白脱甲基酶1抑制通过促进外源转录因子的表达和代谢转换而促进重编程

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Lysine-specific histone demethylase 1 (LSD1) regulates histone methylation and influences the epigenetic state of cells during the generation of induced pluripotent stem cells (iPSCs). Here we reported that LSD1 inhibition via shRNA or specific inhibitor, tranylcypromine, promoted reprogramming at early stage via two mechanisms. At early stage of reprogramming, LSD1 inhibition increased the retrovirus-mediated exogenous expression of Oct4, Klf4, and Sox2 by blocking related H3K4 demethylation. Since LSD1 inhibition still promoted reprogramming even when iPSCs were induced with small-molecule compounds in a virus-free system, additional mechanisms should be involved. When RNA-seq was used for analysis, it was found that LSD1 inhibition reversed some gene expression changes induced by OKS, which subsequently promoted reprogramming. For example, by partially rescuing the decreased expression of Hif1α, LSD1 inhibition reversed the up-regulation of genes in oxidative phosphorylation pathway and the down-regulation of genes in glycolysis pathway. Such effects facilitated the metabolic switch from oxidative phosphorylation to glycolysis and subsequently promoted iPSCs induction. In addition, LSD1 inhibition also promoted the conversion from pre-iPSCs to iPSCs by facilitating the similar metabolic switch. Therefore, LSD1 inhibition promotes reprogramming by facilitating the expression of exogenous transcriptional factors and metabolic switch.
机译:赖氨酸特异性组蛋白脱甲基酶1(LSD1)调节组蛋白甲基化,并在诱导多能干细胞(iPSC)生成过程中影响细胞的表观遗传状态。在这里,我们报道了通过shRNA或特定抑制剂tranylcypromine抑制LSD1可以通过两种机制在早期促进重编程。在重新编程的早期阶段,LSD1抑制通过阻断相关的H3K4去甲基化作用而增加了逆转录病毒介导的Oct4,Klf4和Sox2的外源表达。由于即使在无病毒的系统中用小分子化合物诱导iPSC时,LSD1抑制仍会促进重编程,因此应涉及其他机制。当使用RNA-seq进行分析时,发现LSD1抑制作用逆转了OKS诱导的某些基因表达变化,从而促进了重新编程。例如,通过部分拯救Hif1α的表达减少,LSD1抑制作用逆转了氧化磷酸化途径中基因的上调和糖酵解途径中基因的下调。这种作用促进了代谢从氧化磷酸化到糖酵解的转变,并随后促进了iPSC的诱导。此外,LSD1抑制作用还通过促进相似的代谢转换而促进了从iPSC之前到iPSC的转化。因此,LSD1抑制通过促进外源转录因子的表达和代谢转换来促进重编程。

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