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Dppa2/4 Facilitate Epigenetic Remodeling during Reprogramming to Pluripotency

机译:DPPA2 / 4在重编程到多能性期间促进表观遗传重塑

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As somatic cells are converted into induced pluripotent stem cells (iPSCs), their chromatin is remodeled to a pluripotent configuration with unique euchromatin-to-heterochromatin ratios, DNA methylation patterns, and enhancer and promoter status. The molecular machinery underlying this process is largely unknown. Here, we show that embryonic stem cell (ESC)-specific factors Dppa2 and Dppa4 play a key role in resetting the epigenome to a pluripotent state. They are induced in reprogramming intermediates, function as a heterodimer, and are required for efficient reprogramming of mouse and human cells. When co-expressed with Oct4, Klf4, Sox2, and Myc (OKSM) factors, Dppa2/4 yield reprogramming efficiencies that exceed 80% and accelerate reprogramming kinetics, generating iPSCs in 2 to 4?days. When bound to chromatin, Dppa2/4 initiate global chromatin decompaction via the DNA damage response pathway and contribute to downregulation of somatic genes and activation of ESC enhancers, all of which enables an efficient transition to pluripotency. Our work provides critical insights into how the epigenome is remodeled during acquisition of pluripotency.
机译:随着体细胞转化为诱导多能干细胞(IPSC),将它们的染色质改造成具有独特的Euchromatin-异铬胺比,DNA甲基化模式和增强剂和启动子状态的多能构型。该过程的分子机械基本未知。在这里,我们表明胚胎干细胞(ESC)特异性因子DPPA2和DPPA4在将外延簇复位到多能状态时发挥着关键作用。它们在重编程中间体中诱导,用作异二聚体,并且需要有效重新编程小鼠和人细胞。当用OCT4,KLF4,SOX2和MYC(OKSM)因子共同表达时,DPPA2 / 4屈服于超过80%的重编程效率,并加速重编程动力学,在2至4天内产生IPSCS。当与染色质结合时,DPPA2 / 4通过DNA损伤响应途径引发全局染色质分解,并有助于下调体细胞基因和ESC增强剂的激活,所有这些都能够有效地过渡到多能性。我们的工作提供了对外观蛋白酶在收购多能性期间改造的关键洞察。

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