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首页> 外文期刊>Systematic and Applied Microbiology >Use of SWATH mass spectrometry for quantitative proteomic investigation of Shewanella oneidensis MR-1 biofilms grown on graphite cloth electrodes
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Use of SWATH mass spectrometry for quantitative proteomic investigation of Shewanella oneidensis MR-1 biofilms grown on graphite cloth electrodes

机译:用于在石墨布电极上生长的肺部掺德氏MR-1生物膜定量蛋白质组学研究的使用

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Quantitative proteomics from low biomass, biofilm samples is not well documented. In this study we show successful use of SWATH-MS for quantitative proteomic analysis of a microbial electrochemically active biofilm. Shewanella oneidensis MR-1 was grown on carbon cloth electrodes under continuous anodic electrochemical polarizations in a bioelectrochemical system (BES). Using lactate as the electron donor, anodes serving as terminal microbial electron acceptors were operated at three different electrode potentials (+0.71 V, +0.21 V & -0.19V vs. SHE) and the development of catalytic activity was monitored by measuring the current traces over time. Once maximum current was reached (usually within 21-29 h) the electrochemical systems were shut off and biofilm proteins were extracted from the electrodes for proteomic assessment. SWATH-MS analysis identified 704 proteins, and quantitative comparison was made of those associated with tricarboxcylic acid (TCA) cycle. Metabolic differences detected between the biofilms suggested a branching of the S. oneidensis TCA cycle when grown at the different electrode potentials. In addition, the higher abundance of enzymes involved in the TCA cycle at higher potential indicates an increase in metabolic activity, which is expected given the assumed higher energy gains. This study demonstrates high numbers of identifications on BES biofilm samples can be achieved in comparison to what is currently reported. This is most likely due to the minimal preparation steps required for SWATH-MS. (C) 2014 Elsevier GmbH. All rights reserved.
机译:来自低生物质的定量蛋白质组学,生物膜样品没有充分记录。在本研究中,我们表明了对微生物电化学活性生物膜的定量蛋白质组学分析的SWATH-MS的成功使用。在生物电化学系统(BES)中连续阳极电化学偏振下连续阳极电化学偏振下的碳布电极(BES)下,Shewanella onidensis MR-1在碳布电极上生长。用乳酸作为电子给体,用作末端微生物电子受体的阳极在三种不同的电极电位(+0.71V,+0.21V& -0.19V Vs.He),并通过测量电流监测催化活性的发展随着时间的推移痕迹。一旦达到最大电流(通常在21-29小时内),电化学系统被关闭,并且从电极中提取生物膜蛋白以进行蛋白质组学评估。 SWATH-MS分析确定了704个蛋白质,并且由与三羧酸(TCA)循环相关的那些进行定量比较。在生物膜之间检测到的代谢差异在于在不同电极电位生长时,S. onidensis TCA周期的分支。此外,在较高潜力下参与TCA循环中涉及的较高的酶表明代谢活性的增加,这是预期的,这是假设的更高的能量收益。该研究表明,与目前报道的内容相比,可以实现BES BES BES BES BES BES BES BES BES BES的鉴定。这很可能是由于SWATH-MS所需的最小准备步骤。 (c)2014年Elsevier GmbH。版权所有。

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