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首页> 外文期刊>PLoS One >A Study of Alterations in DNA Epigenetic Modifications (5mC and 5hmC) and Gene Expression Influenced by Simulated Microgravity in Human Lymphoblastoid Cells
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A Study of Alterations in DNA Epigenetic Modifications (5mC and 5hmC) and Gene Expression Influenced by Simulated Microgravity in Human Lymphoblastoid Cells

机译:模拟微重力影响人淋巴母细胞中DNA表观遗传修饰(5mC和5hmC)和基因表达的变化

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摘要

Cells alter their gene expression in response to exposure to various environmental changes. Epigenetic mechanisms such as DNA methylation are believed to regulate the alterations in gene expression patterns. In vitro and in vivo studies have documented changes in cellular proliferation, cytoskeletal remodeling, signal transduction, bone mineralization and immune deficiency under the influence of microgravity conditions experienced in space. However microgravity induced changes in the epigenome have not been well characterized. In this study we have used Next-generation Sequencing (NGS) to profile ground-based “simulated” microgravity induced changes on DNA methylation (5-methylcytosine or 5mC), hydroxymethylation (5-hydroxymethylcytosine or 5hmC), and simultaneous gene expression in cultured human lymphoblastoid cells. Our results indicate that simulated microgravity induced alterations in the methylome (~60% of the differentially methylated regions or DMRs are hypomethylated and ~92% of the differentially hydroxymethylated regions or DHMRs are hyperhydroxymethylated). Simulated microgravity also induced differential expression in 370 transcripts that were associated with crucial biological processes such as oxidative stress response, carbohydrate metabolism and regulation of transcription. While we were not able to obtain any global trend correlating the changes of methylation/ hydroxylation with gene expression, we have been able to profile the simulated microgravity induced changes of 5mC over some of the differentially expressed genes that includes five genes undergoing differential methylation over their promoters and twenty five genes undergoing differential methylation over their gene-bodies. To the best of our knowledge, this is the first NGS-based study to profile epigenomic patterns induced by short time exposure of simulated microgravity and we believe that our findings can be a valuable resource for future explorations.
机译:细胞响应暴露于各种环境变化而改变其基因表达。据信诸如DNA甲基化的表观遗传机制调节基因表达模式的改变。体外和体内研究表明,在太空中受到微重力作用的影响下,细胞增殖,细胞骨架重塑,信号转导,骨矿化和免疫缺陷的变化。然而,微重力引起的表观基因组变化尚未得到很好的表征。在这项研究中,我们使用了下一代测序(NGS)来分析基于地面的“模拟”微重力诱导的DNA甲基化(5-甲基胞嘧啶或5mC),羟甲基化(5-羟甲基胞嘧啶或5hmC)的变化,并在培养物中同时表达基因人淋巴母细胞。我们的结果表明,模拟微重力在甲基化组中引起了改变(〜60%的差异甲基化区域或DMR被低甲基化,〜92%的差异羟甲基化区域或DHMR被高羟甲基化)。模拟微重力还诱导了370个转录本中的差异表达,这些转录本与重要的生物过程(例如氧化应激反应,碳水化合物代谢和转录调控)有关。虽然我们无法获得任何与甲基化/羟基化的变化与基因表达相关的全局趋势,但我们已经能够对一些微分表达的基因在5mC上模拟的微重力诱导的变化进行了分析,其中包括五个在其基因组中经历甲基化的基因启动子和二十五个基因在其基因体上经历甲基化差异。据我们所知,这是第一个基于NGS的研究,它描述了由于短期暴露于模拟微重力而诱发的表观基因组模式,我们相信我们的发现可以为将来的探索提供宝贵的资源。

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