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Two miRNA clusters reveal alternative paths in late-stage reprogramming

机译:两个miRNA簇揭示了后期重编程中的替代途径

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Ectopic expression of specific factors such as Oct4, Sox2, and Klf4 (OSK) is sufficient to reprogram somatic cells into induced pluripotent stem cells (iPSCs). In this study, we examine the paths taken by cells during the reprogramming process by following the transcriptional activation of two pluripotent miRNA clusters (mir-290 and mir-302) in individual cells in vivo and in vitro with knockin reporters. During embryonic development and embryonic stem cell differentiation, all cells sequentially expressed mir-290 and mir-302. In contrast, during OSK-induced reprogramming, cells activated the miRNA loci in a stochastic, nonordered manner. However, the addition of Sall4 to the OSK cocktail led to a consistent reverse sequence of locus activation (mir-302 then mir-290) and increased reprogramming efficiency. These results demonstrate that cells can follow multiple paths during the late stages of reprogramming, and that the trajectory of any individual cell is strongly influenced by the combination of factors introduced.
机译:特定因子(例如Oct4,Sox2和Klf4(OSK))的异位表达足以将体细胞重编程为诱导性多能干细胞(iPSC)。在这项研究中,我们通过敲入报道基因,通过体内和体外单个细胞中两个多能性miRNA簇(mir-290和mir-302)的转录激活,研究了细胞在重编程过程中所采取的路径。在胚胎发育和胚胎干细胞分化过程中,所有细胞顺序表达mir-290和mir-302。相反,在OSK诱导的重编程过程中,细胞以随机,无序的方式激活了miRNA基因座。但是,向OSK鸡尾酒中添加Sall4导致一致的基因座激活反向序列(mir-302,然后是mir-290),并提高了重新编程效率。这些结果表明,在重新编程的后期,细胞可以遵循多种路径,并且任何单个细胞的轨迹都受到引入因素的组合的强烈影响。

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