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首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >An integrated metabolomics workflow for the quantification of sulfur pathway intermediates employing thiol protection with N-ethyl maleimide and hydrophilic interaction liquid chromatography tandem mass spectrometry
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An integrated metabolomics workflow for the quantification of sulfur pathway intermediates employing thiol protection with N-ethyl maleimide and hydrophilic interaction liquid chromatography tandem mass spectrometry

机译:使用N-乙基马来酰亚胺的硫醇保护和亲水相互作用液相色谱串联质谱法定量硫通道中间体的集成代谢组学工作流程

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摘要

The sulfur metabolic pathway is involved in basic modes of cellular metabolism, including methylation, cell division, respiratory oscillations and stress responses. Hence, the implicated high reactivity of the sulfur pathway intermediates entails challenges for their quantitative analysis. In particular the unwanted oxidation of the thiol group-containing metabolites glutathione, cysteine, homocysteine, gamma-glutamyl cysteine and cysteinyl glycine must be prevented in order to obtain accurate snapshots of this important part of cellular metabolism. Suitable analytical methodologies are therefore needed to support studies of drug metabolism and metabolic engineering. In this work, a novel sample preparation strategy targeting thiolic metabolites was established by implementing thiol group protection with N-ethyl maleimide using a cold methanol metabolite extraction procedure. It was shown that N-ethyl maleimide derivatization is compatible with typical metabolite extraction procedures and also allowed for the stabilization of the instable thiolic metabolites in a fully C-13-labeled yeast cell extract. The stable isotope labeled metabolite analogs could be used for internal standardization to achieve metabolite quantification with high precision. Furthermore, a dedicated hydrophilic interaction liquid chromatography tandem mass spectrometry method for the separation of sulfur metabolic pathway intermediates using a sub-2 mu m particle size stationary phase was developed. Coupled with tandem mass spectrometry, the presented methodology proved to be robust, and sensitive (absolute detection limits in the low femtomole range), and allowed for the quantification of cysteine, cysteinyl glycine, cystathionine, cystine, glutamic acid, glutamyl cysteine, reduced glutathione, glutathione disulfide, homocysteine, methionine, S-adenosyl homocysteine and serine in a human ovarian carcinoma cell model.
机译:硫代谢途径参与细胞代谢的基本模式,包括甲基化,细胞分裂,呼吸振荡和应激反应。因此,所暗示的硫途径中间体的高反应性对其定量分析提出了挑战。特别地,必须防止含硫醇基的代谢产物谷胱甘肽,半胱氨酸,高半胱氨酸,γ-谷氨酰半胱氨酸和半胱氨酰甘氨酸的有害氧化,以便获得细胞代谢这一重要部分的准确快照。因此,需要合适的分析方法来支持药物代谢和代谢工程的研究。在这项工作中,通过使用N-乙基马来酰亚胺使用冷甲醇代谢物提取程序实施巯基保护,建立了针对巯基代谢物的新型样品制备策略。结果表明,N-乙基马来酰亚胺的衍生化反应与典型的代谢物提取程序兼容,并且还可以在完全C-13标记的酵母细胞提取物中稳定不稳定的巯基代谢物。稳定的同位素标记的代谢物类似物可用于内部标准化,以实现高精度的代谢物定量。此外,开发了一种专用的亲水相互作用液相色谱串联质谱法,用于使用亚2微米粒径的固定相分离硫代谢途径中间体。与串联质谱联用,该方法被证明是可靠,灵敏的(绝对检测限在小飞摩尔范围内),并允许对半胱氨酸,半胱氨酸甘氨酸,胱硫醚,胱氨酸,谷氨酸,谷氨酰半胱氨酸,还原型谷胱甘肽进行定量,人卵巢癌细胞模型中的谷胱甘肽二硫化物,高半胱氨酸,蛋氨酸,S-腺苷高半胱氨酸和丝氨酸。

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