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Effects of Inorganic Arsenic, Methylated Arsenicals, and Arsenobetaine on Atherosclerosis in the [... formula ...] Mouse Model and the Role of As3mt-Mediated Methylation

机译:小鼠模型中无机砷,甲基化砷和砷甜菜碱对动脉粥样硬化的影响以及As3mt介导的甲基化作用

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Background: Arsenic is metabolized through a series of oxidative methylation reactions by arsenic (3) methyltransferase (As3MT) to yield methylated intermediates. Although arsenic exposure is known to increase the risk of atherosclerosis, the contribution of arsenic methylation and As3MT remains undefined. Objectives: Our objective was to define whether methylated arsenic intermediates were proatherogenic and whether arsenic biotransformation by As3MT was required for arsenic-enhanced atherosclerosis. Methods: We utilized the apoE?/? mouse model to compare atherosclerotic plaque size and composition after inorganic arsenic, methylated arsenical, or arsenobetaine exposure in drinking water. We also generated a p o E ?/?/A s 3 m t ?/? double knockout mice to test whether As3MT-mediated biotransformation was required for the proatherogenic effects of inorganic arsenite. Furthermore, As3MT expression and function were assessed in in vitro cultures of plaque-resident cells. Finally, bone marrow transplantation studies were performed to define the contribution of As3MT-mediated methylation in different cell types to the development of atherosclerosis after inorganic arsenic exposure. Results: We found that methylated arsenicals, but not arsenobetaine, are proatherogenic and that As3MT is required for arsenic to induce reactive oxygen species and promote atherosclerosis. Importantly, As3MT was expressed and functional in multiple plaque-resident cell types, and transplant studies indicated that As3MT is required in extrahepatic tissues to promote atherosclerosis. Conclusion: Taken together, our findings indicate that As3MT acts to promote cardiovascular toxicity of arsenic and suggest that human AS3MT SNPs that correlate with enzyme function could predict those most at risk to develop atherosclerosis among the millions that are exposed to arsenic. https://doi.org/10.1289/EHP806.
机译:背景:砷通过砷(3)甲基转移酶(As3MT)进行的一系列氧化甲基化反应代谢,生成甲基化的中间体。尽管已知砷暴露会增加动脉粥样硬化的风险,但砷甲基化和As3MT的贡献仍然不确定。目的:我们的目标是确定甲基化砷中间体是否具有促动脉粥样硬化作用,以及砷增强动脉粥样硬化是否需要通过As3MT进行砷生物转化。方法:我们使用apoE ?/?小鼠模型比较饮用水中无机砷,甲基化砷或砷甜菜碱暴露后动脉粥样硬化斑块的大小和组成。我们还生成了一个p o E ?/? / A s 3 m t ?/?双敲除小鼠,以测试是否需要As3MT介导的生物转化来实现无机砷的促动脉粥样硬化作用。此外,在斑块驻留细胞的体外培养中评估了As3MT的表达和功能。最后,进行了骨髓移植研究,以确定在无机砷暴露后,As3MT介导的甲基化在不同细胞类型中对动脉粥样硬化发展的贡献。结果:我们发现甲基化的砷化物(而不是砷基甜菜碱)具有促动脉粥样硬化作用,并且As3MT是砷诱导活性氧和促进动脉粥样硬化所必需的。重要的是,As3MT在多种噬斑驻留细胞类型中表达并发挥功能,移植研究表明,肝外组织中需要As3MT来促进动脉粥样硬化。结论:综上所述,我们的发现表明As3MT可以促进砷的心血管毒性,并表明与酶功能相关的人AS3MT SNP可以预测那些暴露于砷的数百万人群中最有发展动脉粥样硬化风险的人群。 https://doi.org/10.1289/EHP806。

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