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Comparative profiling of epigenetic modifications among individuals living in different high and low air pollution zones: A pilot study from India

机译:居住在不同高和低空污染区的个人中表观遗传修饰的比较分析:印度的试验研究

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摘要

Epigenetic modifications act as an important bridge to regulate the complex network of gene-environment interactions. As these mechanisms determine the gene-expression patterns via regulating the transcriptomic machinery, environmental stress induced epigenetic modifications may interrupt distinct cellular functions resulting into generation of diseased phenotypes. In the present study, we used a multi-city approach to compare the epigenomic signatures of individuals living in two tiers of Indian cities categorized as low-risk and high-risk air pollution zones. The high-risk group reported marked changes in the expression levels of epigenetic modifiers (DNMT1, DNMT3a, EZH2, EHMT2 and HAT), that maintains the levels of specific epigenetic marks essential for appropriate gene functioning. These results also coincided with the observed alterations in the levels of DNA methylation (LINE-1 and % 5mC), and histone modifications (H3 and H4), among the high-risk group. In addition, higher degree of changes reported in the expression profile of a selected miRNA panel in the high-risk group indicated the probability of deregulated transcriptional machinery. This was further confirmed by the analysis of a target gene panel involved in various signalling pathways, which revealed differential expression of the gene transcripts regulating cell cycle, inflammation, cell survival, apoptosis and cell adhesion. Together, our results provide first insights of epigenetic modifications among individuals living in different high and low levels of air pollution zones of India. However, further steps to develop a point-of-care epigenomic assay for human bio-monitoring may be immensely beneficial to reduce the health burden of air pollution especially in low and-middle-income countries.
机译:表观遗传修饰作为调节基因环境相互作用复杂网络的重要桥梁。由于这些机制通过调节转录组机制来确定基因表达模式,因此环境应激诱导的表观遗传修饰可能中断不同的细胞功能,导致生成病毒表型。在本研究中,我们使用了多城市方法来比较生活在两层印度城市的个人的表观焦虑,分为低风险和高风险的空气污染区。高风险组报告了表述调节剂表达水平的显着变化(DNMT1,DNMT3A,EZH2,EHMT2和帽子),其维持特异性表观遗传标记的水平,该标记对于适当基因的功能是必不可少的。这些结果还恰逢高风险组中DNA甲基化(Line-1和%5MC)和组蛋白修饰(H3和H4)的观察到的改变。此外,在高风险组中所选miRNA面板的表达谱中报告的更高程度的变化表明了Dereculate转录机械的概率。通过分析参与各种信号途径的靶基因组进一步证实了这一点,这揭示了调节细胞周期,炎症,细胞存活,细胞凋亡和细胞粘附的基因转录物的差异表达。我们的结果在一起,提供了居住在印度不同高和低水平空气污染区的个人中的表观遗传修饰的首先见解。然而,开发人类生物监测的护理点外形测定的进一步措施可能是非常有益的,以减少空气污染的健康负担,特别是在中低收入国家。

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