Dauly Claire, Perlman David H, Costello Catherine E, McComb Mark E
Cardiovascular Proteomics Center, Boston University School of Medicine, Boston, Massachusetts 02118-2543, USA.
J Proteome Res. 2006 Jul;5(7):1688-700. doi: 10.1021/pr060108z.
Because of their complexity, the separation of intact proteins from complex mixtures is an important step to comparative proteomics and the identification and characterization of the proteins by mass spectrometry (MS). In the study reported, we evaluated the use of nonporous-reversed-phase (np-RP)-HPLC for intact protein separation prior to MS analyses. The separation system was characterized and compared to 1D-SDS-PAGE electrophoresis in terms of resolution and sensitivity. We demonstrate that np-RP-HPLC protein separation is highly reproducible and provides intact protein fractions which can be directly analyzed by MALDI-TOF-MS for intact molecular weight determination. An in-well digestion protocol was developed, allowing for rapid protein identification by peptide mass fingerprinting (PMF) and resulted in comparable or improved peptide recovery compared with in-gel digestion. The np-RP sensitivity of detection by UV absorbance at 214 nm for intact proteins was at the low ng level and the sensitivity of peptide analysis by MALDI-TOF-MS was in the 10-50 fmol level. A membrane protein fraction was characterized to demonstrate application of this methodology. Among the identified proteins, multiple forms of vimentin were observed. Overall, we demonstrate that np-RP-HPLC followed by MALDI-TOF-MS allows for rapid, sensitive, and reproducible protein fractionation and very specific protein characterization by integration of PMF analysis with MS intact molecular weight information.
由于其复杂性,从复杂混合物中分离完整蛋白质是比较蛋白质组学以及通过质谱(MS)鉴定和表征蛋白质的重要步骤。在本报道的研究中,我们评估了在MS分析之前使用无孔反相(np-RP)-HPLC进行完整蛋白质分离的情况。对该分离系统进行了表征,并在分辨率和灵敏度方面与一维SDS-PAGE电泳进行了比较。我们证明np-RP-HPLC蛋白质分离具有高度可重复性,并提供了完整的蛋白质组分,可通过MALDI-TOF-MS直接分析以确定完整分子量。开发了一种孔内消化方案,可通过肽质量指纹图谱(PMF)快速鉴定蛋白质,与胶内消化相比,肽回收率相当或有所提高。np-RP在214 nm处通过紫外吸收检测完整蛋白质的灵敏度处于低纳克水平,而通过MALDI-TOF-MS分析肽的灵敏度在10 - 50飞摩尔水平。对一个膜蛋白组分进行了表征以证明该方法的应用。在鉴定出的蛋白质中,观察到了多种波形蛋白形式。总体而言,我们证明np-RP-HPLC继以MALDI-TOF-MS能够通过将PMF分析与MS完整分子量信息相结合,实现快速、灵敏且可重复的蛋白质分级分离以及非常特异的蛋白质表征。