首页> 外文期刊>BioEssays : >AID in reprogramming: Quick and efficient: identification of a key enzyme called AID, and its activity in DNA demethylation, may help to overcome a pivotal epigenetic barrier in reprogramming somatic cells toward pluripotency
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AID in reprogramming: Quick and efficient: identification of a key enzyme called AID, and its activity in DNA demethylation, may help to overcome a pivotal epigenetic barrier in reprogramming somatic cells toward pluripotency

机译:重编程中的AID:快速有效:识别一种称为AID的关键酶及其在DNA去甲基化中的活性,可能有助于克服将体细胞重编程为多能性的关键表观遗传障碍。

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Current methods of reprogramming differentiated cells into induced pluripotent stem cells remain slow and inefficient. In a recent report published online in Nature, Bhutani et al.1 developed a cell fusion strategy, achieving quick and efficient reprogramming toward pluripotency. Using this assay, they identified an immune system protein called activation-induced cytidine deaminase, or AID, which unexpectedly is actually able to "aid" in reprogramming due to its involvement in DNA demethylation that is required for induction of the two key pluripotency genes, Oct4 and Nanog. More recently, Popp et al. 2 also reported online in Nature that AID is important for complete cell reprogramming in mammals. Together, these findings provide new insights into how cells are reprogrammed, identify the specific role of AID in cell fate reversal, and advance the field of regenerative medicine.
机译:当前将分化细胞重编程为诱导性多能干细胞的方法仍然缓慢且效率低下。在最近发表在《自然》杂志上的在线报告中,Bhutani等人[1]开发了一种细胞融合策略,从而实现了快速有效地重编程为多能性。他们使用这种检测方法鉴定了一种称为激活诱导的胞苷脱氨酶或AID的免疫系统蛋白,由于其参与了诱导两个关键多能性基因所需的DNA脱甲基化作用,因此出乎意料地能够“协助”重编程, Oct4和Nanog。最近,Popp等人。 2在《自然》杂志在线上也报道了AID对于哺乳动物中完整的细胞重编程很重要。在一起,这些发现提供了有关如何重新编程细胞,确定AID在细胞命运逆转中的特定作用以及推动再生医学领域的新见解。

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