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DNA-Methylation: Master or Slave of Neural Fate Decisions?

机译:DNA甲基化:是神经命运决定的主宰还是奴隶?

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摘要

The pristine formation of complex organs depends on sharp temporal and spatial control of gene expression. Therefore, epigenetic mechanisms have been frequently attributed a central role in controlling cell fate determination. A prime example for this is the first discovered and still most studied epigenetic mark, DNA methylation, and the development of the most complex mammalian organ, the brain. Recently, the field of epigenetics has advanced significantly: new DNA modifications were discovered, epigenomic profiling became widely accessible, and methods for targeted epigenomic manipulation have been developed. Thus, it is time to challenge established models of epigenetic gene regulation. Here, we review the current state of knowledge about DNA modifications, their epigenomic distribution, and their regulatory role. We will summarize the evidence suggesting they possess crucial roles in neurogenesis and discuss whether this likely includes lineage choice regulation or rather effects on differentiation. Finally, we will attempt an outlook on how questions, which remain unresolved, could be answered soon.
机译:复杂器官的原始形成取决于对基因表达的敏锐的时间和空间控制。因此,表观遗传机制通常被认为是控制细胞命运决定的中心作用。一个典型的例子是第一个被发现并且仍是研究最深入的表观遗传标记,DNA甲基化以及最复杂的哺乳动物器官即大脑的发育。最近,表观遗传学领域取得了长足的进步:发现了新的DNA修饰,表观基因组分析已广泛可用,并且开发了靶向表观基因组操作的方法。因此,是时候挑战表观遗传基因调控的已建立模型。在这里,我们回顾了有关DNA修饰,其表观基因组分布及其调节作用的当前知识状态。我们将总结表明它们在神经发生中起关键作用的证据,并讨论这是否可能包括谱系选择调控或对分化的影响。最后,我们将尝试展望如何尽快解决仍未解决的问题。

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