Monitoring Oxidative Stress and DNA Damage Induced by Heavy Metals in Yeast Expressing a Redox-Sensitive Green Fluorescent Protein

被引:0
|
作者
Shanshan Yu
Wei Qin
Guoqiang Zhuang
Xianen Zhang
Guanjun Chen
Weifeng Liu
机构
[1] Shandong University,The State Key Laboratory of Microbial Technology, School of Life Science
[2] Chinese Academy of Sciences,Research Center for Eco
[3] Chinese Academy of Sciences,Environmental Sciences
来源
Current Microbiology | 2009年 / 58卷
关键词
Heavy Metal; Arsenic; Yeast Cell; Mutation Frequency; Fluorescence Emission Spectrum;
D O I
暂无
中图分类号
学科分类号
摘要
Reactive oxygen species (ROS) has been proposed to play an important role in heavy metal-associated toxicity and pathology. Conventional methods for determining ambient redox state in cells are usually labor-intensive, precluding real-time or single-cell monitoring changes in intracellular redox poise resulting from either metabolic processes or environmental influences. Redox-sensitive green fluorescent protein (roGFP) was expressed in Saccharomyces cerevisiae and recombinant cells were evaluated in monitoring the changes in the redox state of living cells when challenged with toxicologically relevant metal ions. roGFP expressed in yeast responded not only to typical membrane-permeant oxidants and reductants, but also to toxicological metal ion-induced intracellular redox changes. Moreover, exposure of yeast cells to NaAsO2 or Pb(NO3)2 at concentrations that induced redox changes reported by roGFP caused up to two- to three-fold increases in DNA mutation frequency. This mutagenic effect was largely caused by oxidative stress since blocking the production of hydryl radicals significantly reduced the mutation rate as well as delayed the cell death.
引用
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页码:504 / 510
页数:6
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