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Epigenetic reprogramming: Enforcer or enabler of developmental fate

机译:表观遗传重编程:发展命运的推动者或推动者

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摘要

A single fertilized egg is programmed to differentiate into a multitude of distinct cell types that comprise a multicellular organism. Epigenetic mechanisms such as DNA methylation and histone modifications are intricately involved in regulating developmental potential and cellular identity by establishing permissive or repressive chromatin states that are mitotically heritable. Here, we review the dynamics of major epigenetic marks during early mammalian development, and explore the question of whether DNA methylation and chromatin modifications enable or enforce changes that lead to the first cell fate decision.
机译:对单个受精卵进行编程,使其分化为包含多细胞生物的多种不同细胞类型。通过建立允许有丝分裂遗传的染色质状态,DNA甲基化和组蛋白修饰等表观遗传机制会复杂地参与调节发育潜力和细胞特性。在这里,我们审查了哺乳动物早期发育过程中主要表观遗传标记的动态,并探讨了DNA甲基化和染色质修饰是否启用或强制导致第一个细胞命运决定的改变的问题。

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