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通过纳米电喷雾、同位素标记和四极杆/飞行时间质谱仪联用实现快速“从头”肽测序。

Rapid 'de novo' peptide sequencing by a combination of nanoelectrospray, isotopic labeling and a quadrupole/time-of-flight mass spectrometer.

作者信息

Shevchenko A, Chernushevich I, Ens W, Standing K G, Thomson B, Wilm M, Mann M

机构信息

Protein & Peptide Group, European Molecular Biology Laboratory (EMBL), Heidelberg, Germany.

出版信息

Rapid Commun Mass Spectrom. 1997;11(9):1015-24. doi: 10.1002/(SICI)1097-0231(19970615)11:9<1015::AID-RCM958>3.0.CO;2-H.

Abstract

Protein microanalysis usually involves the sequencing of gel-separated proteins available in very small amounts. While mass spectrometry has become the method of choice for identifying proteins in databases, in almost all laboratories 'de novo' protein sequencing is still performed by Edman degradation. Here we show that a combination of the nanoelectrospray ion source, isotopic end labeling of peptides and a quadrupole/ time-of-flight instrument allows facile read-out of the sequences of tryptic peptides. Isotopic labeling was performed by enzymatic digestion of proteins in 1:1 16O/18O water, eliminating the need for peptide derivatization. A quadrupole/time-of-flight mass spectrometer was constructed from a triple quadrupole and an electrospray time-of-flight instrument. Tandem mass spectra of peptides were obtained with better than 50 ppm mass accuracy and resolution routinely in excess of 5000. Unique and error tolerant identification of yeast proteins as well as the sequencing of a novel protein illustrate the potential of the approach. The high data quality in tandem mass spectra and the additional information provided by the isotopic end labeling of peptides enabled automated interpretation of the spectra via simple software algorithms. The technique demonstrated here removes one of the last obstacles to routine and high throughput protein sequencing by mass spectrometry.

摘要

蛋白质微量分析通常涉及对凝胶分离的极少量蛋白质进行测序。虽然质谱分析法已成为在数据库中鉴定蛋白质的首选方法,但在几乎所有实验室中,“从头”蛋白质测序仍通过埃德曼降解法进行。在此我们表明,纳米电喷雾离子源、肽的同位素末端标记与四极杆/飞行时间仪器相结合,能够轻松读出胰蛋白酶肽段的序列。同位素标记是通过在1:1的16O/18O水中对蛋白质进行酶解来实现的,无需对肽进行衍生化处理。利用一台三重四极杆和一台电喷雾飞行时间仪器构建了一台四极杆/飞行时间质谱仪。肽段的串联质谱图质量精度优于50 ppm,分辨率通常超过5000。对酵母蛋白质的独特且容错的鉴定以及一种新蛋白质的测序证明了该方法的潜力。串联质谱图中的高数据质量以及肽的同位素末端标记提供的额外信息,使得能够通过简单的软件算法对质谱图进行自动解读。这里展示的技术消除了质谱法进行常规高通量蛋白质测序的最后障碍之一。

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