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自然应激激素水平驱动细胞寿命过程中的累积表观基因组变化。

Naturalistic Stress Hormone Levels Drive Cumulative Epigenomic Changes along the Cellular Lifespan.

机构信息

Department of Psychiatry, University of North Carolina, Chapel Hill, NC 27514, USA.

Department of Genetics, University of North Carolina, Chapel Hill, NC 27514, USA.

出版信息

Int J Mol Sci. 2021 Aug 16;22(16):8778. doi: 10.3390/ijms22168778.

Abstract

Environmental stress is ubiquitous in modern societies and can exert a profound and cumulative impact on cell function and health phenotypes. This impact is thought to be in large part mediated by the action of glucocorticoid stress hormones, primarily cortisol in humans. While the underlying molecular mechanisms are unclear, epigenetics-the chemical changes that regulate genomic function without altering the genetic code-has emerged as a key link between environmental exposures and phenotypic outcomes. The present study assessed genome-wide DNA (CpG) methylation, one of the key epigenetic mechanisms, at three timepoints during prolonged (51-day) exposure of cultured human fibroblasts to naturalistic cortisol levels, which can be reached in human tissues during in vivo stress. The findings support a spatiotemporal model of profound and widespread stress hormone-driven methylomic changes that emerge at selected CpG sites, are more likely to spread to nearby located CpGs, and quantitatively accrue at open sea, glucocorticoid receptor binding, and chromatin-accessible sites. Taken together, these findings provide novel insights into how prolonged stress may impact the epigenome, with potentially important implications for stress-related phenotypes.

摘要

环境压力在现代社会中无处不在,会对细胞功能和健康表型产生深远且累积的影响。这种影响在很大程度上被认为是由糖皮质激素应激激素(主要是人类的皮质醇)的作用介导的。尽管潜在的分子机制尚不清楚,但表观遗传学——调节基因组功能而不改变遗传密码的化学变化——已成为环境暴露与表型结果之间的关键联系。本研究在培养的人类成纤维细胞长时间(51 天)暴露于自然皮质醇水平下的三个时间点评估了全基因组 DNA(CpG)甲基化,这在体内应激时可以在人体组织中达到。研究结果支持一种时空模型,即强烈和广泛的应激激素驱动的甲基组学变化出现在选定的 CpG 位点,更有可能扩散到附近的 CpG 位点,并在开放海域、糖皮质激素受体结合和染色质可及性位点定量积累。总之,这些发现为长期应激如何影响表观基因组提供了新的见解,这可能对与应激相关的表型具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3890/8395735/7dcecbf7a4b4/ijms-22-08778-g001.jpg

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