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Induction of pluripotency in mouse somatic cells with lineage specifiers

机译:用谱系说明符诱导小鼠体细胞中的多能性

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The reprogramming factors that induce pluripotency have been identified primarily from embryonic stem cell (ESC)-enriched, pluripotency-associated factors. Here, we report that, during mouse somatic cell reprogramming, pluripotency can be induced with lineage specifiers that are pluripotency rivals to suppress ESC identity, most of which are not enriched in ESCs. We found that OCT4 and SOX2, the core regulators of pluripotency, can be replaced by lineage specifiers that are involved in mesendodermal (ME) specification and in ectodermal (ECT) specification, respectively. OCT4 and its substitutes attenuated the elevated expression of a group of ECT genes, whereas SOX2 and its substitutes curtailed a group of ME genes during reprogramming. Surprisingly, the two counteracting lineage specifiers can synergistically induce pluripotency in the absence of both OCT4 and SOX2. Our study suggests a "seesaw model" in which a balance that is established using pluripotency factors and/or counteracting lineage specifiers can facilitate reprogramming.
机译:诱导多能性的重编程因子主要是从富含胚胎干细胞(ESC)的多能性相关因子中鉴定出来的。在这里,我们报告,在小鼠体细胞重编程期间,多能性可以被多能性竞争对手抑制ESC身份的谱系说明符诱导,其中大多数都未富集ESC。我们发现OCT4和SOX2是多能性的核心调节因子,可以分别由涉及中胚层(ME)规范和外胚层(ECT)规范的谱系指定符代替。 OCT4及其替代物减弱了一组ECT基因的升高表达,而SOX2及其替代物在重编程期间减少了一组ME基因。出乎意料的是,在没有OCT4和SOX2的情况下,这两个具有相反作用的谱系指定词可以协同诱导多能性。我们的研究提出了一种“跷跷板模型”,其中使用多能性因子和/或抵消谱系指定者建立的平衡可以促进重新编程。

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