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采用伪多重反应监测和能量分辨质谱去除同量异位素干扰,用于酶解肽的同位素稀释定量分析。

Removal of isobaric interference using pseudo-multiple reaction monitoring and energy-resolved mass spectrometry for the isotope dilution quantification of a tryptic peptide.

机构信息

Univ Brest, CNRS, UMR 6521 CEMCA, Brest, France.

DCM, Univ Grenoble-Alpes, Grenoble, France.

出版信息

J Mass Spectrom. 2024 May;59(5):e5025. doi: 10.1002/jms.5025.

DOI:10.1002/jms.5025
PMID:38607249
Abstract

Energy-resolved mass spectrometry (ERMS) and an isotopically labelled internal standard were successfully combined to accurately quantify a tryptic peptide despite the presence of an isobaric interference. For this purpose, electrospray ionisation tandem mass spectrometry (ESI-MS/MS) experiments were conducted into an ion trap instrument using an unconventional 8 m/z broadband isolation window, which encompassed both the tryptic peptide and its internal standard. Interference removal was assessed by determining an excitation voltage that was high enough to maintain a constant value for the analyte/internal standard peaks intensity ratio, thus ensuring accurate quantification even in the presence of isobaric contamination. Pseudo-multiple reaction monitoring (MRM) was employed above this excitation voltage to quantify the trypic peptide. The internal standard calibration model showed no lack of fit and exhibited a linear dynamic range from 0.5 μM up to 2.5 μM. The detection limit was 0.08 μM. The accuracy of the method was evaluated by quantifying the tryptic peptide of three reference samples intentionally contaminated with the isobaric interference. All the reference samples were accurately quantified with ∼1% deviation despite the isobaric contamination. Furthermore, we have demonstrated that this methodology can also be applied to quantify the isobaric peptide by standard additions down to 0.2 μM. Finally, liquid chromatography ERMS (LC ERMS) experiments yielded similar results, suggesting the potential of the proposed methodology for analysing complex samples.

摘要

能量分辨质谱(ERMS)和同位素标记的内标成功结合,即使存在等质异位干扰,也能准确地定量分析一段肽段。为此,采用非常规的 8 m/z 宽带隔离窗口,在离子阱仪器上进行电喷雾串联质谱(ESI-MS/MS)实验,该窗口同时包含了目标肽段及其内标。通过确定一个足够高的激发电压,使分析物/内标峰强度比保持恒定,从而可以评估干扰的去除效果,确保即使存在等质异位污染,也能进行准确的定量分析。在这个激发电压之上,采用伪多重反应监测(pseudo-MRM)来定量分析目标肽段。内标校准模型没有拟合不足的问题,且在 0.5 μM 至 2.5 μM 之间具有线性动态范围。检测限为 0.08 μM。该方法的准确性通过定量分析故意用等质异位干扰污染的三个参考样品的目标肽段来评估。尽管存在等质异位污染,所有参考样品都能以约 1%的偏差准确定量。此外,我们还证明了该方法还可以通过标准添加将等质异位肽定量到 0.2 μM 以下。最后,液相色谱 ERMS(LC ERMS)实验得到了相似的结果,这表明该方法有潜力用于分析复杂样品。

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