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Regulation of somatic cell reprogramming through inducible mir-302 expression

机译:通过诱导性mir-302表达调节体细胞重编程

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Global demethylation is required for early zygote development to establish stem cell pluripotency, yet our findings reiterate this epigenetic reprogramming event in somatic cells through ectopic introduction of mir-302 function. Here, we report that induced mir-302 expression beyond 1.3-fold of the concentration in human embryonic stem (hES) H1 and H9 cells led to reprogramming of human hair follicle cells (hHFCs) to induced pluripotent stem (iPS) cells. This reprogramming mechanism functioned through mir-302-targeted co-suppression of four epigenetic regulators, AOF2 (also known as KDM1 or LSD1), AOF1, MECP1-p66 and MECP2. Silencing AOF2 also caused DNMT1 deficiency and further enhanced global demethylation during somatic cell reprogramming (SCR) of hHFCs. Re-supplementing AOF2 in iPS cells disrupted such global demethylation and induced cell differentiation. Given that both hES and iPS cells highly express mir-302, our findings suggest a novel link between zygotic reprogramming and SCR, providing a regulatory mechanism responsible for global demethylation in both events. As the mechanism of conventional iPS cell induction methods remains largely unknown, understanding this microRNA (miRNA)-mediated SCR mechanism may shed light on the improvements of iPS cell generation.
机译:全球脱甲基是早期合子发育建立干细胞多能性所必需的,但我们的发现重申了通过异位引入mir-302功能在体细胞中发生表观遗传重编程事件。在这里,我们报道诱导的mir-302表达超过人类胚胎干(hES)H1和H9细胞浓度的1.3倍,导致人类毛囊细胞(hHFCs)重编程为诱导多能干(iPS)细胞。该重编程机制通过针对mir-302靶向共抑制四个表观遗传调控因子AOF2(也称为KDM1或LSD1),AOF1,MECP1-p66和MECP2而起作用。沉默AOF2还导致DNMT1缺乏,并在hHFC的体细胞重编程(SCR)过程中进一步增强了整体脱甲基作用。在iPS细胞中重新补充AOF2破坏了这种整体去甲基化并诱导了细胞分化。鉴于hES和iPS细胞均高度表达mir-302,我们的发现表明合子重编程和SCR之间存在新颖的联系,从而提供了在这两种情况下负责全局脱甲基的调节机制。由于传统的iPS细胞诱导方法的机制仍然未知,因此了解这种由microRNA(miRNA)介导的SCR机制可能会为iPS细胞生成的改进提供启示。

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