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Epigenetic layers and players underlying neurodevelopment

机译:表观遗传层和潜在的神经发育参与者

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摘要

Epigenetic mechanisms convey information above and beyond the sequence of DNA, so it is predicted that they are critical in the complex regulation of brain development and explain the long-lived effects of environmental cues on pre- and early post-natal brain development. Neurons have a complex epigenetic landscape that changes dynamically with transcriptional activity in early life. Here, we summarize progress in our understanding of the discrete layers of the dynamic methylome, chromatin proteome, noncoding RNAs, chromatin loops, and long-range interactions in neuronal development and maturation. Many neurodevelopmental disorders have genetic alterations in these epigenetic modifications or regulators, and these human genetics lessons have demonstrated the importance of these epigenetic players and the epigenetic layers that transcriptional events lay down in the early brain.
机译:表观遗传机制传达的信息超出了DNA序列的范围,因此可以预测它们在大脑发育的复杂调节中至关重要,并可以解释环境提示对出生前和出生后早期大脑发育的长期影响。神经元具有复杂的表观遗传学景观,在早期生活中会随着转录活动而动态变化。在这里,我们总结了对动态甲基化组,染色质蛋白质组,非编码RNA,染色质环以及神经元发育和成熟中的远程相互作用的离散层的理解的进展。许多神经发育障碍在这些表观遗传修饰或调节器中具有遗传变异,这些人类遗传学课程证明了这些表观遗传参与者和转录事件在早期大脑中产生的表观遗传层的重要性。

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