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Reprogramming of mouse somatic cells into pluripotent stem-like cells using a combination of small molecules

机译:使用小分子组合将小鼠体细胞重编程为多能干细胞样细胞

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摘要

Somatic cells can be reprogrammed to generate induced pluripotent stem cells (iPSCs) by overexpression of four transcription factors, Oct4, Klf4, Sox2, and c-Myc. However, exogenous expression of pluripotency factors raised concerns for clinical applications. Here, we show that iPS-like cells (iPSLCs) were generated from mouse somatic cells in two steps with small molecule compounds. In the first step, stable intermediate cells were generated from mouse astrocytes by Bmi1. These cells called induced epiblast stem cell (EpiSC)-like cells (iEpiSCLCs) are similar to EpiSCs in terms of expression of specific markers, epigenetic state, and ability to differentiate into three germ layers. In the second step, treatment with MEK/ERK and GSK3 pathway inhibitors in the presence of leukemia inhibitory factor resulted in conversion of iEpiSCLCs into iPSLCs that were similar to mESCs, suggesting that Bmi1 is sufficient to reprogram astrocytes to partially reprogrammed pluripotency. Next, Bmi1 function was replaced with Shh activators (oxysterol and purmorphamine), which demonstrating that combinations of small molecules can compensate for reprogramming factors and are sufficient to directly reprogram mouse somatic cells into iPSLCs. The chemically induced pluripotent stem cell-like cells (ciPSLCs) showed similar gene expression profiles, epigenetic status, and differentiation potentials to mESCs.
机译:可以通过过度表达四个转录因子Oct4,Klf4,Sox2和c-Myc对体细胞进行重新编程,以产生诱导性多能干细胞(iPSC)。然而,多能性因子的外源表达引起了临床应用的关注。在这里,我们显示了iPS样细胞(iPSLCs)是由小鼠体细胞与小分子化合物分两步生成的。第一步,通过Bmi1从小鼠星形胶质细胞生成稳定的中间细胞。这些被称为诱导上皮干细胞(EpiSC)样细胞(iEpiSCLC)的细胞在特异性标志物的表达,表观遗传状态和分化为三个胚层的能力方面与EpiSC相似。第二步,在白血病抑制因子存在下用MEK / ERK和GSK3途径抑制剂治疗导致iEpiSCLCs转化为与mESCs相似的iPSLCs,这表明Bmi1足以将星形胶质细胞重编程为部分重编程的多能性。接下来,Bmi1功能被Shh激活剂(氧固醇和嘌呤胺)取代,这表明小分子的组合可以补偿重编程因子,并且足以将小鼠体细胞直接重编程为iPSLC。化学诱导的多能干细胞样细胞(ciPSLC)显示出相似的基因表达谱,表观遗传状态和向mESCs分化的潜能。

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