Absolute quantitation of peptides and proteins by coulometric mass spectrometry after derivatization

IF 1.6 3区 化学 Q3 PHYSICS, ATOMIC, MOLECULAR & CHEMICAL International Journal of Mass Spectrometry Pub Date : 2023-10-17 DOI:10.1016/j.ijms.2023.117153
Praneeth Ivan Joel Fnu, Md Tanim-Al Hassan, Timothy Yaroshuk, Yongling Ai, Hao Chen
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Abstract

Peptide/protein quantitation using mass spectrometry (MS) is advantageous due to its high sensitivity. Traditional absolute peptide quantitation methods rely on making calibration curves using peptide standards or isotope-labelled peptide standards, which are expensive and take time to synthesize. A method which can eliminate the need for using standards would be beneficial. Recently, we developed coulometric mass spectrometry (CMS) which can be used to quantify peptides that are oxidizable (e.g., those containing tyrosine or tryptophan), without using peptide standard. The method is based on electrochemical oxidation of peptides followed by MS measurement of the oxidation yield. However, it cannot be directly used to quantify peptides without oxidizable residues. To extend this method for quantifying peptides/proteins in general, in this study, we adopted a derivatization strategy, in which a target peptide is first tagged with an electroactive reagent such as monocarboxymethylene blue NHS ester (MCMB-NHS ester), followed with quantitation by CMS. To illustrate the power of this method, we have analyzed peptides MG and RPPGFSPFR. The quantification error was less than 5%. Using RPPGFSPFR as an example, the quantitation sensitivity of the technique was found to be 0.25 pmol. Furthermore, we also used the strategy to quantify proteins cytochrome C and β-casein with an error of 2–26 %.

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衍生化后的多肽和蛋白质的库仑质谱绝对定量
质谱法(MS)具有灵敏度高的优点。传统的绝对肽定量方法依赖于用肽标准品或同位素标记肽标准品制作校准曲线,这些方法昂贵且合成时间长。一种不需要使用标准的方法将是有益的。最近,我们开发了库仑质谱法(CMS),该方法可用于定量可氧化肽(如含有酪氨酸或色氨酸的肽),而无需使用肽标准。该方法基于多肽的电化学氧化,然后用质谱测量氧化产率。然而,它不能直接用于量化无氧化残基的肽。为了将这种方法扩展到一般的肽/蛋白质定量中,在本研究中,我们采用了衍生化策略,首先用电活性试剂(如单羧甲基蓝NHS酯(MCMB-NHS酯))标记目标肽,然后用CMS进行定量。为了说明这种方法的力量,我们分析了肽MG和RPPGFSPFR。定量误差小于5%。以RPPGFSPFR为例,该技术的定量灵敏度为0.25 pmol。此外,我们还使用该策略定量蛋白质细胞色素C和β-酪蛋白,误差为2 - 26%。
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来源期刊
CiteScore
3.60
自引率
5.60%
发文量
145
审稿时长
71 days
期刊介绍: The journal invites papers that advance the field of mass spectrometry by exploring fundamental aspects of ion processes using both the experimental and theoretical approaches, developing new instrumentation and experimental strategies for chemical analysis using mass spectrometry, developing new computational strategies for data interpretation and integration, reporting new applications of mass spectrometry and hyphenated techniques in biology, chemistry, geology, and physics. Papers, in which standard mass spectrometry techniques are used for analysis will not be considered. IJMS publishes full-length articles, short communications, reviews, and feature articles including young scientist features.
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