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Gas-Phase Fragmentation Reactions of Protonated Cystine using High-Resolution Tandem Mass Spectrometry

机译:高分辨率串联质谱法检测质子化胱氨酸的气相裂解反应

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摘要

Cystine is an important biomolecule in living systems. Although collision-induced dissociation (CID)-based tandem mass spectrometry (MS/MS) is commonly applied for identification and quantification of cystine in both biomedical and nutritional studies, gas-phase fragmentation reactions of cystine in CID has remained unclear. This may lead to improper assay design, which may in turn result in inaccurate test results. In the present study, gas-phase fragmentation reactions of protonated cystine in CID were characterized using high-resolution MS/MS and pseudo MS3. Fragmentations started from cleavages of disulfide bond (S–S) and carbon–sulfur bond (C–S). When cleaving at the S–S, protonated cysteine was generated as one of the predominant fragmentation products. Minor fragmentations started from the loss of H2O + CO and the loss of NH3. Our results reveal that the m/z 74 fragment ion, which is commonly used as a product ion of the transition (precursor/product ion pair) in selected reaction monitoring (SRM) assay for quantifying cystine, comprises two isobaric fragments originating from different parts of cystine. This indicates the need for careful selection of a stable isotope-labeled cystine molecule as an internal standard for SRM assays. Here, we provide a clear picture of the fragmentation reactions of protonated cystine in CID. It can serve as a useful guidance for designing MS/MS-based assays for cystine testing.
机译:胱氨酸是生命系统中重要的生物分子。尽管在生物医学和营养学研究中,基于碰撞诱导解离(CID)的串联质谱(MS / MS)通常用于胱氨酸的鉴定和定量,但CID中胱氨酸的气相裂解反应仍不清楚。这可能会导致化验设计不当,进而可能导致测试结果不准确。本文利用高分辨率MS / MS和伪MS 3 对CID中质子化胱氨酸的气相裂解反应进行了表征。断裂始于二硫键(SS)和碳硫键(CS)的裂解。当在S–S上裂解时,质子化的半胱氨酸是主要的碎片产物之一。少量碎片始于H2O + CO的损失和NH3的损失。我们的研究结果表明,m / z 74碎片离子通常用作过渡反应的产物离子(前体/产物离子对),用于选择反应监测(SRM)测定胱氨酸的定量,包含两个源自不同部分的同量异位片段胱氨酸。这表明需要仔细选择稳定的同位素标记的胱氨酸分子作为SRM分析的内标。在这里,我们提供了CID中质子化胱氨酸片段化反应的清晰图片。它可以为设计用于胱氨酸测试的基于MS / MS的检测方法提供有用的指导。

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