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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Looking beyond the DNA sequence: The relevance of DNA methylation processes for the stress-diathesis model of depression
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Looking beyond the DNA sequence: The relevance of DNA methylation processes for the stress-diathesis model of depression

机译:超越DNA序列:DNA甲基化过程与抑郁症的应激素质模型的相关性

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摘要

The functioning of the hypothalamic-pituitary-adrenal (HPA) axis and serotonergic (5-HT) system are known to be intertwined with mood. Alterations in these systems are often associated with depression. However, neither are sufficient to cause depression in and of themselves. It is now becoming increasingly clear that the environment plays a crucial role, particularly, the perinatal environment. In this review, we posit that early environmental stress triggers a series of epigenetic mechanisms that adapt the genome and programme the HPA axis and 5-HT system for survival in a harsh environment. We focus on DNA methylation as it is the most stable epigenetic mark. Given that DNA methylation patterns are in large part set within the perinatal period, long-term gene expression programming by DNA methylation is especially vulnerable to environmental insults during this period. We discuss specific examples of genes in the 5-HT system (serotonin transporter) and HPA axis (glucocorticoid receptor and arginine vasopressin enhancer) whose DNA methylation state is associated with early life experience and may potentially lead to depression vulnerability. We conclude with a discussion on the relevance of studying epigenetic mechanisms in peripheral tissue as a proxy for those occurring in the human brain and suggest avenues for future research.
机译:下丘脑-垂体-肾上腺(HPA)轴和5-羟色胺能(5-HT)系统的功能与情绪交织在一起。这些系统的改变通常与抑郁症有关。但是,它们都不足以导致自身的沮丧。现在越来越清楚的是,环境起着至关重要的作用,尤其是围产期环境。在这篇综述中,我们假设早期的环境压力会触发一系列表观遗传机制,这些机制可以适应基因组并编程HPA轴和5-HT系统以在恶劣环境中生存。我们专注于DNA甲基化,因为它是最稳定的表观遗传标记。鉴于DNA甲基化模式大部分是在围产期设定的,因此在此期间,通过DNA甲基化进行的长期基因表达编程特别容易受到环境侵害。我们讨论了5-HT系统(5-羟色胺转运蛋白)和HPA轴(糖皮质激素受体和精氨酸加压素增强子)中基因的特定例子,其DNA甲基化状态与早期的生活经历有关,并可能导致抑郁症。我们以研究外周组织表观遗传机制作为人类脑中发生的替代机制的相关性的讨论作为结束,并为未来的研究提供了途径。

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