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使用固定化金属离子亲和色谱富集、随后的部分β-消除/化学标记以及基质辅助激光解吸/电离质谱分析对磷酸肽进行动态鉴定。

Dynamic identification of phosphopeptides using immobilized metal ion affinity chromatography enrichment, subsequent partial beta-elimination/chemical tagging and matrix-assisted laser desorption/ionization mass spectrometric analysis.

作者信息

Ahn Yeong Hee, Park Eun Jung, Cho Kun, Kim Jin Young, Ha Sang Hoon, Ryu Sung Ho, Yoo Jong Shin

机构信息

Proteome Analysis Team, Korea Basic Science Institute, Daejon 305-333, Korea.

出版信息

Rapid Commun Mass Spectrom. 2004;18(20):2495-501. doi: 10.1002/rcm.1651.

Abstract

The enrichment of phosphopeptides using immobilized metal ion affinity chromatography (IMAC) and subsequent mass spectrometric analysis is a powerful protocol for detecting phosphopeptides and analyzing their phosphorylation state. However, nonspecific binding peptides, such as acidic, nonphosphorylated peptides, often coelute and make analyses of mass spectra difficult. This study used a partial chemical tagging reaction of a phosphopeptide mixture, enriched by IMAC and contaminated with nonspecific binding peptides, following a modified beta-elimination/Michael addition method, and dynamic mass analysis of the resulting peptide pool. Mercaptoethanol was used as a chemical tag and nitrilotriacetic acid (NTA) immobilized on Sepharose beads was used for IMAC enrichment. The time-dependent dynamic mass analysis of the partially tagged reaction mixture detected intact phosphopeptides and their mercaptoethanol-tagged derivatives simultaneously by their mass difference (-20 Da for each phosphorylation site). The number of new peaks appearing with the mass shift gave the number of multiply phosphorylated sites in a phosphopeptide. Therefore, this partial chemical tagging/dynamic mass analysis method can be a powerful tool for rapid and efficient phosphopeptide identification and analysis of the phosphorylation state concurrently using only MS analysis data.

摘要

使用固定化金属离子亲和色谱法(IMAC)富集磷酸肽并随后进行质谱分析是检测磷酸肽及其磷酸化状态的强大方案。然而,非特异性结合肽,如酸性、非磷酸化肽,常常会同时洗脱,使得质谱分析变得困难。本研究采用改良的β-消除/迈克尔加成法,对经IMAC富集且被非特异性结合肽污染的磷酸肽混合物进行部分化学标记反应,并对所得肽库进行动态质量分析。使用巯基乙醇作为化学标记,固定在琼脂糖珠上的次氮基三乙酸(NTA)用于IMAC富集。对部分标记反应混合物进行随时间变化的动态质量分析,通过其质量差异(每个磷酸化位点相差-20 Da)同时检测完整的磷酸肽及其巯基乙醇标记的衍生物。质量位移出现的新峰数量给出了磷酸肽中多磷酸化位点的数量。因此,这种部分化学标记/动态质量分析方法可以成为仅使用质谱分析数据同时快速高效地鉴定磷酸肽并分析其磷酸化状态的强大工具。

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