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急性金属胁迫对酿酒酵母的影响。

Impact of acute metal stress in Saccharomyces cerevisiae.

作者信息

Hosiner Dagmar, Gerber Susanne, Lichtenberg-Fraté Hella, Glaser Walter, Schüller Christoph, Klipp Edda

机构信息

Department of Applied Genetics and Cell Biology, UFT-Campus Tulln, University of Natural Resources and Life Sciences (BOKU), Vienna, Austria.

AG Computational Time Series Analysis, Institute of Computational Science, Faculty of Informatics, Università della Svizzera italiana, Lugano, Switzerland ; Theoretical Biophysics Humboldt-Universität zu Berlin, Berlin, Germany.

出版信息

PLoS One. 2014 Jan 9;9(1):e83330. doi: 10.1371/journal.pone.0083330. eCollection 2014.

Abstract

Although considered as essential cofactors for a variety of enzymatic reactions and for important structural and functional roles in cell metabolism, metals at high concentrations are potent toxic pollutants and pose complex biochemical problems for cells. We report results of single dose acute toxicity testing in the model organism S. cerevisiae. The effects of moderate toxic concentrations of 10 different human health relevant metals, Ag(+), Al(3+), As(3+), Cd(2+), Co(2+), Hg(2+), Mn(2+), Ni(2+), V(3+), and Zn(2+), following short-term exposure were analyzed by transcription profiling to provide the identification of early-on target genes or pathways. In contrast to common acute toxicity tests where defined endpoints are monitored we focused on the entire genomic response. We provide evidence that the induction of central elements of the oxidative stress response by the majority of investigated metals is the basic detoxification process against short-term metal exposure. General detoxification mechanisms also comprised the induction of genes coding for chaperones and those for chelation of metal ions via siderophores and amino acids. Hierarchical clustering, transcription factor analyses, and gene ontology data further revealed activation of genes involved in metal-specific protein catabolism along with repression of growth-related processes such as protein synthesis. Metal ion group specific differences in the expression responses with shared transcriptional regulators for both, up-regulation and repression were also observed. Additionally, some processes unique for individual metals were evident as well. In view of current concerns regarding environmental pollution our results may support ongoing attempts to develop methods to monitor potentially hazardous areas or liquids and to establish standardized tests using suitable eukaryotic a model organism.

摘要

尽管金属被认为是多种酶促反应的必需辅助因子,在细胞代谢中发挥着重要的结构和功能作用,但高浓度的金属却是强效的有毒污染物,给细胞带来复杂的生化问题。我们报告了在模式生物酿酒酵母中进行的单剂量急性毒性测试结果。通过转录谱分析,研究了短期暴露于10种与人类健康相关的不同金属(Ag(+)、Al(3+)、As(3+)、Cd(2+)、Co(2+)、Hg(2+)、Mn(2+)、Ni(2+)、V(3+)和Zn(2+))的中等毒性浓度后的影响,以确定早期靶基因或途径。与监测特定终点的常见急性毒性测试不同,我们关注的是整个基因组反应。我们提供的证据表明,大多数被研究金属诱导氧化应激反应的核心元件是针对短期金属暴露的基本解毒过程。一般解毒机制还包括诱导编码伴侣蛋白的基因以及通过铁载体和氨基酸螯合金属离子的基因。层次聚类、转录因子分析和基因本体数据进一步揭示了参与金属特异性蛋白质分解代谢的基因的激活,同时抑制了与生长相关的过程,如蛋白质合成。还观察到金属离子组在表达反应上的特异性差异,对于上调和下调都有共同的转录调节因子。此外,个别金属特有的一些过程也很明显。鉴于当前对环境污染的关注,我们的结果可能支持正在进行的尝试,即开发监测潜在危险区域或液体的方法,并使用合适的真核模式生物建立标准化测试。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f11c/3886979/e29b0ccca41b/pone.0083330.g001.jpg

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