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Nitric Oxide Modulates Lead Content during Lead-Induced Cell Killing in Yeast Cells

机译:一氧化氮调节酵母细胞中铅诱导的细胞杀伤过程中的铅含量

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In this study we investigated the role of NO in Pb-induced yeast cell death. We found that the rate of cell death increased with increasing concentrations of Pb(NO3)(2) and prolonged exposure to Pb(NO3)(2). NO production also increased significantly during Pb-induced yeast cell death. An exogenous NO donor increased Pb toxicity to cells, while NO synthesis inhibitors and NO-specific scavengers alleviated Pb toxicity. To further investigate the mechanism of NO in Pb toxicity, we measured the Pb content and mRNA expression of metal ion transport gene SMF1 in yeast cells. Our results showed that endogenous NO may enhance SMF1 expression, thereby increasing Pb content in yeast cells. Meanwhile, we found that the intracellular ROS levels increased with the increase of intracellular Pb content in yeast cells. Conclusion: Pb can promote the increase of intracellular nitric oxide levels. NO may promote intracellular Pb transport by enhancing the expression of SMF1 in Pb-induced yeast cell death. Intracellular accumulation of Pb further promotes the increase of intracellular ROS levels, and then lead to yeast cell death by oxidative damage.
机译:在这项研究中,我们调查了NO在铅诱导的酵母细胞死亡中的作用。我们发现细胞死亡率随着Pb(NO3)(2)浓度的增加和Pb(NO3)(2)的延长暴露而增加。在铅诱导的酵母细胞死亡期间,NO的产生也显着增加。外源NO供体增加了Pb对细胞的毒性,而NO合成抑制剂和NO特异性清除剂则减轻了Pb的毒性。为了进一步研究NO在铅毒性中的作用机理,我们测量了酵母细胞中金属离子转运基因SMF1的铅含量和mRNA表达。我们的结果表明内源性NO可能会增强SMF1表达,从而增加酵母细胞中的Pb含量。同时,我们发现酵母细胞中细胞内ROS水平随细胞内Pb含量的增加而增加。结论:铅可促进细胞内一氧化氮水平的升高。 NO可能通过在铅诱导的酵母细胞死亡中增强SMF1的表达来促进细胞内铅的转运。细胞内Pb的积累进一步促进细胞内ROS水平的升高,然后通过氧化损伤导致酵母细胞死亡。

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