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Neuroepigenetic mechanisms in disease

机译:疾病的神经表生机制

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Epigenetics allows for the inheritance of information in cellular lineages during differentiation, independent of changes to the underlying genetic sequence. This raises the question of whether epigenetic mechanisms also function in post-mitotic neurons. During the long life of the neuron, fluctuations in gene expression allow the cell to pass through stages of differentiation, modulate synaptic activity in response to environmental cues, and fortify the cell through age-related neuroprotective pathways. Emerging evidence suggests that epigenetic mechanisms such as DNA methylation and histone modification permit these dynamic changes in gene expression throughout the life of a neuron. Accordingly, recent studies have revealed the vital importance of epigenetic players in the central nervous system and during neurodegeneration. Here, we provide a review of several of these recent findings, highlighting novel functions for epigenetics in the fields of Rett syndrome, Fragile X syndrome, and Alzheimer’s disease research. Together, these discoveries underscore the vital importance of epigenetics in human neurological disorders.
机译:表观遗传学允许分化过程中细胞谱系中的信息遗传,而与基础遗传序列的变化无关。这就提出了表观遗传机制是否在有丝分裂后神经元中也起作用的问题。在神经元的长寿命中,基因表达的波动使细胞能够经历分化阶段,响应环境线索来调节突触活性,并通过与年龄相关的神经保护途径来强化细胞。越来越多的证据表明,表观遗传机制(例如DNA甲基化和组蛋白修饰)可以在神经元的整个生命周期中实现这些基因表达的动态变化。因此,最近的研究揭示了表观遗传参与者在中枢神经系统和神经退行性病变中的至关重要性。在这里,我们提供了对这些最新发现的回顾,重点介绍了Rett综合征,Fragile X综合征和Alzheimer病研究领域中表观遗传学的新功能。这些发现共同强调了表观遗传学在人类神经系统疾病中的至关重要性。

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