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Prbteomic analysis of differential protein expression in Acidithiobacillus ferrooxidans cultivated in high potassium concentration

机译:高钾浓度培养的铁氧化酸硫杆菌的蛋白质表达差异的蛋白质组学分析

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Acidithiobacillus ferrooxidans is a chemolithoautotrophic acidophile that oxidizes ferrous iron or sulfur compounds to obtain energy in the presence of various ions. To investigate the potassium ion response of A. ferrooxidans, we conducted a proteomics analysis. We identified eight proteins that were differentially expressed in the presence of high potassium concentration, including four up-regulated and four down-regulated proteins. Transcription levels of the genes encoding differential expressedproteins were subsequently analyzed by Northern blot in the presence of high potassium concentration. Among the up-regulated proteins, GDP-mannose 4,6-dehydratase, ribose 5-phosphate isomerase A and ribose-phosphate pyrophosphokinase were known to be implicated in the synthesis of glycocalyx, suggesting that the formation of glycocalyx might be involved in the A. ferrooxidans response to high potassium concentration. Thickening of the glycocalyx layer was also observed in cells cultivated under high potassium concentration via transmission electronic microscopy (TEM) analysis. Among the down-regulated proteins, ATP synthase Fl delta subunit and ATP synthase Fl beta subunit were two important components of ATP synthase. ATP synthase (P-ATPase) is directly linked to the transport of potassium into the cell, thus Acidithiobacillus ferrooxidans might just reduce the quantity of ATP synthase to offset the high potassium level in the culture medium. Therefore, the results obtained here provide some new clues to improve our understanding of the response of A. ferrooxidans to high potassium concentration.
机译:酸性氧化硫杆菌铁氧体是一种嗜化学自养嗜酸菌,它在各种离子存在下氧化亚铁或硫化合物以获得能量。为了研究A.ferrooxidans的钾离子反应,我们进行了蛋白质组学分析。我们鉴定了在高钾浓度下差异表达的8种蛋白质,包括4种上调和4种下调的蛋白。随后在高钾浓度下通过Northern印迹分析编码差异表达蛋白的基因的转录水平。在上调的蛋白质中,已知GDP甘露糖4,6-脱水酶,核糖5-磷酸异构酶A和核糖-磷酸焦磷酸激酶与糖萼的合成有关,这表明糖萼的形成可能与A有关。铁氧化铁对高钾浓度的反应。通过透射电子显微镜(TEM)分析,在高钾浓度下培养的细胞中也观察到糖萼层的增厚。在下调的蛋白质中,ATP合酶F1δ亚基和ATP合酶F1β亚基是ATP合酶的两个重要成分。 ATP合酶(P-ATPase)与钾向细胞中的运输直接相关,因此酸性硫杆菌铁氧体可能会减少ATP合酶的数量以抵消培养基中的高钾水平。因此,这里获得的结果提供了一些新的线索,以增进我们对氧化铁农杆菌对高钾浓度的响应的理解。

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