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1.
Environ Pollut ; 229: 210-218, 2017 Oct.
Article in English | MEDLINE | ID: mdl-28599205

ABSTRACT

Arsenic is a widespread metalloid in the environment, which poses a broad spectrum of adverse effects on human health. However, a global view of arsenic-induced heart toxicity is still lacking, and the underlying molecular mechanisms remain unclear. By performing a comparative quantitative proteomic analysis, the present study aims to investigate the alterations of proteome profile in rat heart after long-term exposure to arsenic. As a result, we found that the abundance of 81 proteins were significantly altered by arsenic treatment (35 up-regulated and 46 down-regulated). Among these, 33 proteins were specifically associated with cardiovascular system development and function, including heart development, heart morphology, cardiac contraction and dilation, and other cardiovascular functions. It is further proposed that the aberrant regulation of 14 proteins induced by arsenic would disturb cardiac contraction and relaxation, impair heart morphogenesis and development, and induce thrombosis in rats, which is mediated by the Akt/p38 MAPK signaling pathway. Overall, these findings will augment our knowledge of the involved mechanisms and develop useful biomarkers for cardiotoxicity induced by environmental arsenic exposure.


Subject(s)
Arsenic/toxicity , Hazardous Substances/toxicity , Heart/physiology , Proteome/metabolism , Toxicity Tests, Chronic , Animals , Down-Regulation , Humans , Male , Proteins , Proteomics , Rats , Signal Transduction/drug effects , Up-Regulation
2.
Toxicol Appl Pharmacol ; 326: 7-14, 2017 07 01.
Article in English | MEDLINE | ID: mdl-28414027

ABSTRACT

Arsenic exposure has been associated with male reproductive dysfunction by disrupting steroidogenesis; however, the roles of epigenetic drivers, especially histone methylation in arsenic-induced steroidogenic toxicity remain not well documented. In this study, we investigated the role of histone H3 lysine 9 (H3K9) methylation in steroidogenesis disturbance in mouse Leydig cells (MLTC-1) due to arsenic exposure. Our results indicated that mRNA and protein expression levels of 3ß-hydroxysteroid dehydrogenase (3ß-HSD) were both significantly up-regulated while the rest of key genes involved in steroidogenesis were down-regulated. Moreover, arsenic exposure significantly decreased the histone H3K9 di- and tri-methylation (H3K9me2/3) levels in MLTC-1 cells. Since H3K9 demethylation leads to gene activation, we further investigated whether the induction of 3ß-HSD expression was ascribed to reduced H3K9 methylation. The results showed that H3K9me2/3 demethylase (JMJD2A) inhibitor, quercetin (Que) significantly attenuated the decrease of H3K9me2/3 and increase of 3ß-HSD expression induced by arsenic. To further elucidate the mechanism for the activation of 3ß-HSD, we determined the histone H3K9 methylation levels in Hsd3b gene promoter, which also showed significant decrease of H3K9me2/3 in the investigated region after arsenic exposure. Considering these results, we conclude that arsenic exposure induced 3ß-HSD up-regulation by suppressing H3K9me2/3 status, which is suggested as a compensatory mechanism for steroidogenic disturbance in MLTC-1 cells.


Subject(s)
3-Hydroxysteroid Dehydrogenases/biosynthesis , Arsenites/toxicity , DNA Methylation/drug effects , Histones/metabolism , Leydig Cells/drug effects , Sodium Compounds/toxicity , 3-Hydroxysteroid Dehydrogenases/genetics , Animals , Cell Line , Cell Survival/drug effects , Dose-Response Relationship, Drug , Down-Regulation , Enzyme Induction , Enzyme Inhibitors/pharmacology , Epigenesis, Genetic/drug effects , Histone Demethylases/antagonists & inhibitors , Histone Demethylases/metabolism , Inhibitory Concentration 50 , Leydig Cells/enzymology , Male , Methylation , Mice , Progesterone/metabolism , Promoter Regions, Genetic , Quercetin/pharmacology , RNA, Messenger/biosynthesis , RNA, Messenger/genetics , Testosterone/metabolism
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