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用于蛋白质组学中平行和多维肽段分级分离的带堆叠盘的模块化启停萃取尖端

Modular stop and go extraction tips with stacked disks for parallel and multidimensional Peptide fractionation in proteomics.

作者信息

Ishihama Yasushi, Rappsilber Juri, Mann Matthias

机构信息

Center for Experimental BioInformatics, Department of Biochemistry and Molecular Biology, University of Southern Denmark, Campusvej 55, 5230 Odense M, Denmark.

出版信息

J Proteome Res. 2006 Apr;5(4):988-94. doi: 10.1021/pr050385q.

Abstract

Proteome complexity necessitates protein or peptide separation prior to analysis. We previously described a pipet-tip based peptide micropurification system named StageTips (STop and Go Extraction Tips), which consists of a very small disk of membrane-embedded separation material. Here, we extend this approach in several dimensions by stacking disks containing reversed phase (C(18)) and strong cation exchange (SCX) materials. Multidimensional fractionation as well as desalting, filtration, and concentration prior to mass spectrometry in single or tandem columns is described. C(18)-SCX-C(18) stacked disks significantly improved protein identification by LC-MS/MS for an E. coli protein digest and by MALDI-MS for a 12 standard protein digest. Sequential fractionation based on C(18)- followed by SCX material was also developed. This multidimensional fractionation approach was expanded to parallel sample preparation by incorporating C(18)-SCX-StageTips into a 96-well plate (StagePlate). Fractions were collected into other C(18)-StagePlates and desalted and eluted in parallel to sample well plates or MALDI targets. This approach is suitable for high throughput protein identification for moderately complex, low abundance samples using automated nanoelectrospray-MS/MS or MALDI-MS.

摘要

蛋白质组的复杂性使得在分析之前必须对蛋白质或肽进行分离。我们之前描述了一种基于移液器吸头的肽微纯化系统,名为StageTips(停止与继续萃取吸头),它由一个非常小的嵌入膜的分离材料圆盘组成。在这里,我们通过堆叠包含反相(C(18))和强阳离子交换(SCX)材料的圆盘,在几个维度上扩展了这种方法。描述了在单柱或串联柱中进行质谱分析之前的多维分级分离以及脱盐、过滤和浓缩。对于大肠杆菌蛋白质消化物,C(18)-SCX-C(18)堆叠圆盘显著提高了通过LC-MS/MS进行的蛋白质鉴定,对于12种标准蛋白质消化物,通过MALDI-MS也有显著提高。还开发了基于C(18)然后是SCX材料的顺序分级分离。通过将C(18)-SCX-StageTips整合到96孔板(StagePlate)中,这种多维分级分离方法扩展到了平行样品制备。馏分被收集到其他C(18)-StagePlates中,并与样品孔板或MALDI靶平行进行脱盐和洗脱。这种方法适用于使用自动纳电喷雾-MS/MS或MALDI-MS对中等复杂、低丰度样品进行高通量蛋白质鉴定。

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