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Comparative proteomic analysis of sulfur-oxidizing Acidithiobacillus ferrooxidans CCM 4253 cultures having lost the ability to couple anaerobic elemental sulfur oxidation with ferric iron reduction

机译:氧化硫的酸性氧化亚铁硫杆菌CCM 4253培养物的比较蛋白质组分析,该培养物失去了将厌氧元素硫氧化与三价铁还原结合的能力

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In extremely acidic environments, ferric iron can be a thermodynamically favorable electron acceptor during elemental sulfur oxidation by some Acidithiobacillus spp. under anoxic conditions. Quantitative 2D-PAGE proteomic analysis of a resting cell suspension of a sulfur-grown Acidithiobacillus ferrooxidans CCM 4253 subculture that had lost its iron-reducing activity revealed 147 protein spots that were downregulated relative to an iron-reducing resting cell suspension of the antecedent sulfur-oxidizing culture and 111 that were upregulated. Tandem mass spectrometric analysis of strongly downregulated spots identified several physiologically important proteins that apparently play roles in ferrous iron oxidation, including the outer membrane cytochrome Cyc2 and rusticyanin. Other strongly repressed proteins were associated with sulfur metabolism, including heterodisulfide reductase, thiosulfate:quinone oxidoreductase and sulfide:quinone reductase. Transcript-level analyses revealed additional downregulation of other respiratory genes. Components of the iron-oxidizing system thus apparently play central roles in anaerobic sulfur oxidation coupled with ferric iron reduction in the studied microbial strain. (C) 2016 Institut Pasteur. Published by Elsevier Masson SAS. All rights reserved.
机译:在极端酸性的环境中,三价硫杆菌属细菌在元素硫的氧化过程中,铁可能是热力学上有利的电子受体。在缺氧条件下。丢失了铁还原活性的硫生长的酸性铁氧体氧化亚铁硫杆菌CCM 4253继代培养物的静息细胞悬浮液的定量2D-PAGE蛋白质组学分析显示,相对于先前的硫磺还原性静息细胞悬浮液而言,147个蛋白点被下调。氧化培养和111上调。串联质谱对强烈下调的斑点进行了鉴定,确定了几种生理上重要的蛋白质,这些蛋白质显然在亚铁氧化中起作用,包括外膜细胞色素Cyc2和Rustyanin。其他受强烈抑制的蛋白质也与硫代谢有关,包括杂二硫键还原酶,硫代硫酸盐:醌氧化还原酶和硫化物:醌还原酶。转录水平的分析显示其他呼吸基因的其他下调。因此,在所研究的微生物菌株中,铁氧化系统的成分显然在厌氧硫氧化和三价铁还原中起着核心作用。 (C)2016年巴斯德研究所。由Elsevier Masson SAS发布。版权所有。

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