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用于肽和蛋白质表征的反应性电喷雾辅助激光解吸/电离

Reactive-electrospray-assisted laser desorption/ionization for characterization of peptides and proteins.

作者信息

Peng Ivory X, Ogorzalek Loo Rachel R, Shiea Jentaie, Loo Joseph A

机构信息

Department of Chemistry and Biochemistry, University of California-Los Angeles, Los Angeles, California 90095, USA.

出版信息

Anal Chem. 2008 Sep 15;80(18):6995-7003. doi: 10.1021/ac800870c. Epub 2008 Aug 7.

Abstract

Electrospray-assisted laser desorption/ionization (ELDI) is a soft ionization method for mass spectrometry (MS) and combines features of both electrospray ionization (ESI) and matrix-assisted laser desorption/ionization to generate ESI-like multiply charged molecules. The ELDI process is based on merging ESI-generated, charged droplets with particles UV laser desorbed from dried or wet sample deposits. We previously reported that ELDI is amenable for MS-based protein identification of large peptides and small proteins using top-down and bottom-up techniques (Peng, I. X.; Shiea, J.; Ogorzalek Loo, R. R.; Loo, J. A. Rapid Commun. Mass Spectrom. 2007, 21, 2541-2546). We have extended our studies by applying collisionally activated dissociation and electron-transfer dissociation MS ( n ) to protein analysis and show that ELDI is capable of multistage MS to MS (4) for top-down characterization of large proteins such as 29 kDa carbonic anhydrase. Multiply charged proteins generated by the ELDI mechanism can be shifted to higher charge by increasing the organic content in the ESI solvent to denature the protein molecules, or by adding m-nitrobenzyl alcohol to the ESI solvent. Furthermore, we introduce "reactive-ELDI", which supports chemical reactions during the ELDI process. Preliminary data for online disulfide bond reduction using dithiothreitol on oxidized glutathione and insulin show reactive-ELDI to be effective. These data provide evidence that the laser-desorbed particles merge with the ESI-generated charge droplets to effect chemical reactions prior to online MS detection. This capability should allow other chemical and enzymatic reactions to be exploited as online protein characterization tools, as well as extending them to flexible, spatially resolved tissue screening and imaging. Also, these reactive-ELDI disulfide reduction experiments enable direct top-down protein identification for proteomic study, side stepping laborious, time-consuming sample preparation steps such as in-solution reduction and alkylation.

摘要

电喷雾辅助激光解吸/电离(ELDI)是一种用于质谱分析(MS)的软电离方法,它结合了电喷雾电离(ESI)和基质辅助激光解吸/电离的特点,以产生类似ESI的多电荷分子。ELDI过程基于将ESI产生的带电液滴与从干燥或湿润样品沉积物中紫外激光解吸的颗粒合并。我们之前报道过,ELDI适用于使用自上而下和自下而上技术对大肽和小蛋白质进行基于质谱的鉴定(彭,I. X.;谢亚,J.;奥戈尔扎莱克·卢,R. R.;卢,J. A. 《快速质谱通讯》,2007年,21卷,2541 - 2546页)。我们通过将碰撞激活解离和电子转移解离质谱(n)应用于蛋白质分析扩展了研究,并表明ELDI能够进行多级质谱到质谱(4),用于自上而下表征大蛋白质,如29 kDa的碳酸酐酶。由ELDI机制产生的多电荷蛋白质可以通过增加ESI溶剂中的有机含量以使蛋白质分子变性,或者通过向ESI溶剂中添加间硝基苄醇来转移到更高电荷。此外,我们引入了“反应性ELDI”,它支持ELDI过程中的化学反应。使用二硫苏糖醇对氧化型谷胱甘肽和胰岛素进行在线二硫键还原的初步数据表明反应性ELDI是有效的。这些数据证明,在在线质谱检测之前,激光解吸的颗粒与ESI产生的带电液滴合并以进行化学反应。这种能力应该允许利用其他化学和酶促反应作为在线蛋白质表征工具,并将它们扩展到灵活的、空间分辨的组织筛选和成像。此外,这些反应性ELDI二硫键还原实验能够直接进行自上而下的蛋白质鉴定用于蛋白质组学研究,避开了诸如溶液内还原和烷基化等费力、耗时的样品制备步骤。

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