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通过前体离子扫描测定磷酸肽的四极杆飞行时间质谱与三重四极杆质谱法比较

Quadrupole time-of-flight versus triple-quadrupole mass spectrometry for the determination of phosphopeptides by precursor ion scanning.

作者信息

Steen H, Küster B, Mann M

机构信息

Protein Interaction Laboratory at the Center for Experimental Bioinformatics, Department of Biochemistry and Molecular Biology, University of Southern Denmark/Odense University, Campusvej 55, DK-5230 Odense M, Denmark.

出版信息

J Mass Spectrom. 2001 Jul;36(7):782-90. doi: 10.1002/jms.174.

Abstract

An API 3000 triple-quadrupole instrument and a QSTAR Pulsar quadrupole time-of-flight (TOF) mass spectrometer were compared for the determination of phosphopeptides by precursor ion scanning in both the positive and negative nanoelectrospray ionization modes. The limits of detection for synthetic phosphopeptides were similar (500 amol microl(-1)) for both types of instruments when monitoring precursors of -79 Da (PO(3)(-)). However, the quadrupole TOF system was approximately fivefold more sensitive (1 fmol microl(-1)) than the triple-quadrupole instrument (5 fmol microl(-1)) when monitoring precursors of 216 Da (immonium ion of phosphotyrosine). The recently introduced Q(2)-pulsing function, which enhances the transmission of fragment ions of a selected m/z window from the collision cell into the TOF part, improved the sensitivity of precursor ion scans on a quadrupole TOF instrument. The selectivity of precursor ion scans is much better on quadrupole TOF systems than on triple quadrupoles because the high resolving power of the reflectron-TOF mass analyzer permits high-accuracy fragment ion selection at no expense of sensitivity. This minimizes interferences from other peptide fragment ions (a-, b-, and y- type) of the same nominal mass but with sufficient differences in their exact masses. As a result, the characteristic immonium ion of phosphotyrosine at m/z 216.043 can be utilized for the selective detection of tyrosine phosphorylated peptides. Our data suggest that, in addition to their superior performance for peptide sequencing, quadrupole TOF instruments also offer a very viable alternative to triple quadrupoles for precursor ion scanning, thus combining high sensitivity and selectivity for both MS and MS/MS experiments in one instrument.

摘要

比较了API 3000三重四极杆仪器和QSTAR Pulsar四极杆飞行时间(TOF)质谱仪,以在正、负纳米电喷雾电离模式下通过前体离子扫描测定磷酸肽。在监测-79 Da(PO(3)(-))的前体时,两种仪器对合成磷酸肽的检测限相似(500 amol μL(-1))。然而,在监测216 Da(磷酸酪氨酸的亚铵离子)的前体时,四极杆TOF系统的灵敏度(1 fmol μL(-1))比三重四极杆仪器(5 fmol μL(-1))高约五倍。最近引入的Q(2)脉冲功能增强了选定m/z窗口的碎片离子从碰撞池到TOF部分的传输,提高了四极杆TOF仪器上前体离子扫描的灵敏度。四极杆TOF系统上前体离子扫描的选择性比三重四极杆好得多,因为反射式TOF质量分析器的高分辨能力允许在不损失灵敏度的情况下进行高精度的碎片离子选择。这最大限度地减少了来自相同标称质量但精确质量有足够差异的其他肽碎片离子(a-、b-和y-型)的干扰。因此,m/z 216.043处磷酸酪氨酸的特征亚铵离子可用于酪氨酸磷酸化肽的选择性检测。我们的数据表明,除了在肽测序方面具有卓越性能外,四极杆TOF仪器在前体离子扫描方面也为三重四极杆提供了一种非常可行的替代方案,从而在一台仪器中结合了MS和MS/MS实验的高灵敏度和选择性。

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