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固相萃取/基质辅助激光解吸电离质谱:用于蛋白质样品靶向净化的扩展离子对表面

Solid-phase extraction/MALDI-MS: extended ion-pairing surfaces for the on-target cleanup of protein samples.

作者信息

Zhang L, Orlando R

机构信息

Department of Biochemistry & Molecular Biology, University of Georgia, Athens 30602-4712, USA.

出版信息

Anal Chem. 1999 Oct 15;71(20):4753-7. doi: 10.1021/ac990328e.

Abstract

The surface of a matrix-assisted laser desorption/ionization mass spectrometry (MALDI-MS) target can be covalently modified so that it behaves like a medium for solid-phase extraction (SPE). These modified targets are capable of binding molecules of interest, but not contaminants, from sample solutions placed on them. This allows the analyte to be cleaned up on the probe surface by simply washing the target to remove the contaminants prior to MALDI-MS analysis. A limitation of the current SPE/MALDI-MS targets is that they have a fairly low binding capacity, since the coating on these targets is based upon self-assembled monolayers (SAMs). To overcome this limitation, we have investigated new surface coatings for SPE/MALDI-MS that will have a higher binding capacity than targets modified with SAMs. Here, we describe the development of new SPE/MALDI-MS surfaces that have very high molecular weight (> 300,000) polylysine chains attached to them. Targets modified in this manner are capable of binding peptides/proteins by ion-pairing interactions and have approximately 100 times the binding capacity of the SAM-based targets. Furthermore, these polylysine targets can capture over 60% of a protein from a highly contaminated solution. Consequently, polylysine SPE/MALDI-MS targets offer a practical solution for analyzing very small volumes (< 1 microL) of peptide/protein solutions contaminated with high levels of inorganic salts, buffers, detergents, chaotropic agents, and other solubilizing agents.

摘要

基质辅助激光解吸/电离质谱(MALDI-MS)靶材的表面可以进行共价修饰,使其表现得像固相萃取(SPE)介质。这些经过修饰的靶材能够从置于其上的样品溶液中结合目标分子,而不结合污染物。这使得在进行MALDI-MS分析之前,只需清洗靶材以去除污染物,就能在探针表面净化分析物。当前SPE/MALDI-MS靶材的一个局限性在于其结合能力相当低,因为这些靶材上的涂层基于自组装单分子层(SAMs)。为克服这一局限性,我们研究了用于SPE/MALDI-MS的新型表面涂层,其结合能力将高于用SAMs修饰的靶材。在此,我们描述了新型SPE/MALDI-MS表面的开发,这些表面附着有非常高的分子量(>300,000)的聚赖氨酸链。以这种方式修饰的靶材能够通过离子对相互作用结合肽/蛋白质,其结合能力约为基于SAMs的靶材的100倍。此外,这些聚赖氨酸靶材能够从高度污染的溶液中捕获超过60%的蛋白质。因此,聚赖氨酸SPE/MALDI-MS靶材为分析极少量(<1微升)被高浓度无机盐、缓冲液、去污剂、离液剂和其他增溶剂污染的肽/蛋白质溶液提供了一种切实可行的解决方案。

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