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海洋细菌荧光假单胞菌 BA3SM1 抵抗金属的策略:蛋白质组分析。

Strategies developed by the marine bacterium Pseudomonas fluorescens BA3SM1 to resist metals: A proteome analysis.

机构信息

Microorganismes Métaux et Toxicité, Institut National des Sciences et Techniques de la Mer, Conservatoire National des Arts et Métiers, Cherbourg-Octeville, France.

出版信息

Aquat Toxicol. 2013 Mar 15;128-129:215-32. doi: 10.1016/j.aquatox.2012.12.006. Epub 2012 Dec 22.

Abstract

A global proteomic evaluation of the response of the marine bacterium Pseudomonas fluorescens BA3SM1 to Cd, Zn and Cu was performed by two dimensional gel electrophoresis followed by mass spectrometry. When stressed with Cd, the most toxic metal for P. fluorescens BA3SM1, cell growth is rapidly affected and the number of proteins up-regulated (sixteen for 0.4 mM Cd) remains low in comparison with results obtained for Zn and Cu (twenty eight for 1.5mM Zn and forty four for 1.5 mM Cu). The changes in protein expression indicate that the cell adapts to metals by inducing essentially seven defense mechanisms: cell aggregation/biofilm formation (Zn=Cu>Cd); modification of envelope properties to increase the extracellular metal biosorption and/or control the uptake of metal (Cu>Zn); metal export (Cd=Zn and probably Cu); responses to oxidative stress (Cu>Zn>Cd); intracellular metal sequestration (Zn=Cu and probably Cd); hydrolysis of abnormally folded proteins (Cd=Cu), and the over-synthesis of proteins inhibited by metal (Cd>Cu>Zn). To the best of our knowledge, this is the first report showing that a marine P. fluorescens is able to acquire a metal-resistant phenotype, making the strain BA3SM1 a promising agent for bioremediation processes.

摘要

采用二维凝胶电泳和质谱技术对海洋荧光假单胞菌 BA3SM1 响应 Cd、Zn 和 Cu 的全蛋白质组进行了分析。当受到对 P. fluorescens BA3SM1 毒性最大的 Cd 胁迫时,细胞生长迅速受到影响,与 Zn 和 Cu 相比,上调的蛋白数量(Cd 为 0.4mM 时为 16 个)较少(Zn 为 1.5mM 时为 28 个,Cu 为 1.5mM 时为 44 个)。蛋白表达的变化表明,细胞通过诱导主要的七种防御机制来适应金属:细胞聚集/生物膜形成(Zn=Cu>Cd);修饰包膜特性以增加细胞外金属的生物吸附和/或控制金属的摄取(Cu>Zn);金属输出(Cd=Zn 且可能还有 Cu);应对氧化应激(Cu>Zn>Cd);细胞内金属螯合(Zn=Cu 且可能还有 Cd);异常折叠蛋白的水解(Cd=Cu),以及金属抑制的蛋白质的过度合成(Cd>Cu>Zn)。据我们所知,这是首次报道海洋荧光假单胞菌能够获得耐金属表型,使 BA3SM1 菌株成为生物修复过程的有前途的候选菌株。

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