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首页> 外文期刊>Journal of proteome research >Uncovering Effects of Ex Vivo Protease Activity during Proteomics and Peptidomics Sample Extraction in Rat Brain Tissue by Oxygen-18 Labeling
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Uncovering Effects of Ex Vivo Protease Activity during Proteomics and Peptidomics Sample Extraction in Rat Brain Tissue by Oxygen-18 Labeling

机译:通过氧18标记在大鼠脑组织蛋白质组学和肽组学样品提取过程中发现体外蛋白酶活性的影响

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摘要

In biological samples, proteins and peptides are altered by proteolytic activity. The actual ex vivo form of the peptidome or proteome analyzed, therefore, does not always reflect the natural in vivo state. Sample stabilization and sample treatment are thereby decisive for how far these two states diverge. To assess ex vivo formation of peptides, we used enzymatic incorporation of oxygen-18 water during proteolysis (PALeO approach) to label ex-vivo-formed peptides in rodent brain tissue. Rates of ex-vivo-formed peptides were determined in 25 samples that were stabilized and treated by six different protocols, whereby samples were subjected to different conditions such as temperature, urea concentration, and duration of treatment. Samples were measured by nano LC-Orbitrap-MS, and incorporation of oxygen-18 was determined by MS/MS database search and analysis of the precursor isotope pattern. Extent of ex vivo degradations was affected relevantly by the sample treatment protocol applied and stopped almost completely by heat stabilization. Determination of the formation state by oxygen- 18 incorporation by MS/MS database search correlated well to more elaborate analysis of the MS isotope pattern. Overall, oxygen-18 labeling in combination with shotgun data-acquisition and MS/MS database search offers an adjuvant and easily applicable tool to monitor sample quality and fidelity in peptide and neuropeptide sample preparations.
机译:在生物样品中,蛋白和肽会因蛋白水解活性而改变。因此,所分析的肽组或蛋白质组的实际离体形式并不总是反映天然的体内状态。因此,样品的稳定性和样品处理对于这两个状态的差异程度起决定性作用。为了评估肽的离体形成,我们在蛋白水解过程中使用了氧18水的酶促结合(PALeO方法)来标记啮齿动物脑组织中离体形成的肽。在25种样品中测定了离体形成肽的速率,这些样品已通过六种不同的方案进行了稳定和处理,从而使样品经受不同的条件,例如温度,尿素浓度和处理时间。通过纳米LC-Orbitrap-MS测量样品,并通过MS / MS数据库搜索和前体同位素模式分析确定氧18的掺入。离体降解的程度受到所应用样品处理方案的相关影响,并通过热稳定作用几乎完全停止。通过MS / MS数据库搜索通过氧18掺入确定形成状态与MS同位素模式的更精细分析密切相关。总体而言,氧18标记与shot弹枪数据采集和MS / MS数据库搜索相结合,可提供一种辅助且易于使用的工具来监控肽和神经肽样品制备中的样品质量和保真度。

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