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首页> 外文期刊>Antonie van Leeuwenhoek: Journal of Microbiology and serology >Kinetics of anaerobic elemental sulfur oxidation by ferric iron in Acidithiobacillus ferrooxidans and protein identification by comparative 2-DE-MS/MS
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Kinetics of anaerobic elemental sulfur oxidation by ferric iron in Acidithiobacillus ferrooxidans and protein identification by comparative 2-DE-MS/MS

机译:铁酸酸性硫杆菌中三价铁氧化厌氧元素硫的动力学及2-DE-MS / MS鉴定蛋白质

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摘要

Elemental sulfur oxidation by ferric iron in Acidithiobacillus ferrooxidans was investigated. The apparent Michaelis constant for ferric iron was 18.6 mM. An absence of anaerobic ferric iron reduction ability was observed in bacteria maintained on elemental sulfur for an extended period of time. Upon transition from ferrous iron to elemental sulfur medium, the cells exhibited similar kinetic characteristics of ferric iron reduction under anaerobic conditions to those of cells that were originally maintained on ferrous iron. Nevertheless, a total loss of anaerobic ferric iron reduction ability after the sixth passage in elemental sulfur medium was demonstrated. The first proteomic screening of total cell lysates of anaerobically incubated bacteria resulted in the detection of 1599 protein spots in the master two-dimensional electrophoresis gel. A set of 59 more abundant and 49 less abundant protein spots that changed their protein abundances in an anaerobiosis-dependent manner was identified and compared to iron- and sulfur-grown cells, respectively. Proteomic analysis detected a significant increase in abundance under anoxic conditions of electron transporters, such as rusticyanin and cytochrome c 552, involved in the ferrous iron oxidation pathway. Therefore we suggest the incorporation of rus-operon encoded proteins in the anaerobic respiration pathway. Two sulfur metabolism proteins were identified, pyridine nucleotide-disulfide oxidoreductase and sulfide-quinone reductase. The important transcription regulator, ferric uptake regulation protein, was anaerobically more abundant. The anaerobic expression of several proteins involved in cell envelope formation indicated a gradual adaptation to elemental sulfur oxidation.
机译:研究了酸性氧化硫硫杆菌中三价铁的元素硫氧化。铁的表观米氏常数是18.6mM。在元素硫中保持较长时间的细菌中未观察到厌氧铁还原能力。从亚铁转变为元素硫介质后,这些细胞在厌氧条件下表现出的三价铁还原动力学特征与最初在亚铁上保持的细胞相似。然而,在元素硫介质中第六次传代后,证明了厌氧铁还原能力的全部丧失。第一次蛋白质组学筛选厌氧培养的细菌的总细胞裂解物导致在主二维电泳凝胶中检测到1599个蛋白斑点。鉴定出一组59个较丰富和49个较不丰富的蛋白质斑点,这些斑点以厌氧菌依赖性方式改变了蛋白质丰度,并分别与铁和硫生长的细胞进行了比较。蛋白质组学分析发现,在缺铁条件下,参与亚铁氧化途径的电子转运蛋白(如rustyanyanin和细胞色素c 552)的丰度显着增加。因此,我们建议在无氧呼吸途径中引入rus-operon编码的蛋白质。鉴定了两种硫代谢蛋白,吡啶核苷酸-二硫化物氧化还原酶和硫化物-醌还原酶。重要的转录调节剂,铁摄取调节蛋白,厌氧状态更为丰富。参与细胞包膜形成的几种蛋白质的厌氧表达表明逐渐适应元素硫的氧化。

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