Adaptive epigenetic response of glutathione (GSH)-related genes against lead (Pb)-induced toxicity, in individuals chronically exposed to the metal

GSTP1公司 GCLC公司 谷胱甘肽 GPX1型 氧化应激 表观遗传学 谷胱甘肽过氧化物酶 化学 CpG站点 毒性 生物化学 DNA甲基化 分子生物学 生物 基因 过氧化氢酶 基因表达 有机化学
作者
Paula Pícoli Devóz,Mariana Bisarro dos Reis,Willian Robert Gomes,Flora Troina Maraslis,Diego Luís Ribeiro,Lusânia Maria Greggi Antunes,Bruno Lemos Batista,Denise Grotto,Rui Manuel Reis,Fernando Barbosa,Gustavo Rafael Mazzaron Barcelos
出处
期刊:Chemosphere [Elsevier]
卷期号:269: 128758-128758 被引量:15
标识
DOI:10.1016/j.chemosphere.2020.128758
摘要

It is well known that one of the most outstanding adverse effects related to lead (Pb) exposure is oxidative stress; moreover, recent findings suggest that disturbances of the redox status of cells are associated with epigenetic responses, and metabolism of glutathione (GSH) plays an important role in this process. This study aimed to assess Pb exposure on % methylation of GSH-related genes’ promoter regions (%CH3-CpG) and their influence on biomarkers of oxidative stress, in workers exposed to the metal. One hundred nine male workers participated in the study; ICP-MS determined blood lead levels (BLL); biochemical parameters related to redox status, named GSH, glutathione peroxidase (GPX) and glutathione-S-transferase (GST) were quantified by UV/Vis spectrophotometry. Determination of %CH3-CpG of genes GCLC, GPX1, GSR, and GSTP1 were done by pyrosequencing. Inverse associations were seen between BLL and %CH3-CpG-GCLC, and %CH3-CpG-GSTP1. Moreover, metal exposure did not impact GSH, GPX, and GST; however, negative associations were observed between %CH3-CpG-GPX1 and %CH3-CpG-GSTP1, and the activities of GPX and GST, respectively. Taken together, our results give further evidence about adaptive epigenetic response to avoid oxidative damage induced by Pb exposure, allowing a better understanding of the molecular mechanisms related to the metal toxicity.
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