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首页> 外文期刊>Proteomics >Insights into yeast adaptive response to the agricultural fungicide mancozeb: a toxicoproteomics approach.
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Insights into yeast adaptive response to the agricultural fungicide mancozeb: a toxicoproteomics approach.

机译:深入了解酵母对农用杀菌剂mancozeb的适应性反应:一种毒物学方法。

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摘要

Toxicogenomics has the potential to elucidate gene-environment interactions to identify genes that are affected by a particular chemical at the early stages of the toxicological response and to establish parallelisms between different organisms. The fungicide mancozeb, widely used in agriculture, is an ethylene-bis-dithiocarbamate complex with manganese and zinc. Exposure to this pesticide has been linked to the development of idiopathic Parkinson's disease and cancer. Given that many signalling pathways and their molecular components are substantially conserved among eukaryotic organisms, we used Saccharomyces cerevisiae to get insights into the molecular mechanisms of mancozeb toxicity and adaptation based on expression proteomics. The early global response to mancozeb was analysed by quantitative proteomics using 2-DE. The target genes (e.g. TSA1, TSA2, SOD1, SOD2, AHP1, GRE2, GRX1, CYS3, PRE3, PRE6, PRE8, PRE9, EFT1, RPS5, TIF11, HSP31, HSP26, HSP104, HSP60, HSP70-family) and the putative main transcription activators (e.g. Yap1, Msn2/Msn4, Met4, Hsf1, Aft1, Pdr1, Skn7, Rpn4p, Gcn4) of the complex mancozeb-induced expression changes are related with yeast response to stress, in particular to oxidative stress, protein translation initiation and protein folding, disassembling of protein aggregates and degradation of damaged proteins. Our results also suggest that this study provided powerful indications that may be useful to expand the knowledge obtained in yeast not only to the global response to mancozeb toxicity in phytopathogenic fungi but also to humans.
机译:毒理基因组学有可能阐明基因与环境的相互作用,以识别在毒理学反应的早期阶段受特定化学物质影响的基因,并在不同生物之间建立平行关系。杀菌剂代森锰锌是农业上广泛使用的一种乙烯-双-二硫代氨基甲酸酯与锰和锌的络合物。接触这种农药与特发性帕金森氏病和癌症的发展有关。鉴于在真核生物中许多信号传导途径及其分子成分基本上是保守的,我们使用了酿酒酵母,以基于表达蛋白质组学的观点,深入了解了曼考昔布毒性和适应的分子机制。使用2-DE通过定量蛋白质组学分析了早期对mancozeb的整体反应。靶基因(例如TSA1,TSA2,SOD1,SOD2,AHP1,GRE2,GRX1,CYS3,PRE3,PRE6,PRE8,PRE9,EFT1,RPS5,TIF11,HSP31,HSP26,HSP104,HSP60,HSP70家族)和推定基因复杂的代森锰锌诱导的表达变化的主要转录激活因子(例如Yap1,Msn2 / Msn4,Met4,Hsf1,Aft1,Pdr1,Skn7,Rpn4p,Gcn4)与酵母对压力的反应有关,特别是对氧化应激,蛋白质翻译起始的反应蛋白质折叠,蛋白质聚集体的分解和受损蛋白质的降解。我们的研究结果还表明,该研究提供了强有力的指示,可能不仅有助于扩展酵母中获得的知识,而且不仅对植物致病性真菌对锰锌的整体反应有反应,而且对人类也有帮助。

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