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Exploring the limits of robust detection of incorporation of 13C by mass spectrometry in protein-based stable isotope probing (protein-SIP)

机译:探索基于蛋白质的稳定同位素探测(protein-SIP)中通过质谱可靠地检测13C掺入的极限

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One of the features of protein-based stable isotope probing is the parallel identification of differentially labeled peptide forms and the accurate calculation of their relative isotope abundances. The level of incorporation is informative of the metabolic activity of the species that synthesized the said protein and peptide. To model the carbon flux in a microbial community, an accurate assessment is crucial. Since the initial processes in carbon consumption are one of the most interesting objectives in microbial ecology, the methodology to detect low amounts of incorporation was tuned, and the limits of robust detection were analyzed. For this, Pseudomonas fluorescens DSM 50090T was grown on galactose using different ratios of ~(12)C/~(13)C galactose from 10% down to 0.1% labeled galactose. After prolonged cultivation to ensure complete labeling, protein samples were separated by one-dimensional gel electrophoresis, subsequently tryptically digested and analyzed by ultra-performance liquid chromatography (UPLC) Orbitrap tandem mass spectrometry (MS/MS) measurements. The isotopic patterns from identified peptides in the mass spectra were used to calculate the ~(13)C relative isotope abundance (RIA) in the respective peptides. The statistic distribution of the RIA values in dependence of the number of analyzed peptides was compared between the different ratios of unlabeled/labeled substrate. The acquired data showed that the applied method is capable of detecting a difference in ~(13)C incorporation of ±0.1% RIA based on at least 20 peptides. This sensitivity makes protein-stable isotope probing a valuable method for quantitative assessment of species specific metabolic activity in metaproteomics.
机译:基于蛋白质的稳定同位素探测的特征之一是并行识别差异标记的肽形式并准确计算其相对同位素丰度。掺入的水平是合成所述蛋白质和肽的物质的代谢活性的信息。为了模拟微生物群落中的碳通量,准确的评估至关重要。由于碳消耗的初始过程是微生物生态学中最有趣的目标之一,因此对检测低掺入量的方法进行了调整,并分析了稳健检测的局限性。为此,使用〜(12)C /〜(13)C半乳糖的不同比例,将荧光假单胞菌DSM 50090T从10%降低到0.1%标记的半乳糖。经过长时间培养以确保完全标记后,通过一维凝胶电泳分离蛋白质样品,然后进行胰蛋白酶消化并通过超高效液相色谱(UPLC)Orbitrap串联质谱(MS / MS)测量进行分析。质谱图中鉴定的肽的同位素模式用于计算各个肽中的〜(13)C相对同位素丰度(RIA)。在不同比例的未标记/标记底物之间比较了RIA值的统计分布,该分布取决于所分析的肽数。所获得的数据表明,所应用的方法能够基于至少20个肽段检测±0.1%RIA的〜(13)C掺入差异。这种敏感性使蛋白质稳定的同位素成为一种有价值的方法,可用于定量评估元蛋白质组学中物种特异性的代谢活性。

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