Chen Wendong, Adhikari Subash, Chen Lan, Lin Lin, Li Hua, Luo Shusheng, Yang Pengyuan, Tian Ruijun
Department of Chemistry, Southern University of Science and Technology, Shenzhen 518055, China; Department of Chemistry, Fudan University, Shanghai 200433, China.
Department of Chemistry, Southern University of Science and Technology, Shenzhen 518055, China.
J Chromatogr A. 2017 May 19;1498:207-214. doi: 10.1016/j.chroma.2017.01.033. Epub 2017 Jan 13.
Multidimensional peptide fractionation strategies have been approved as the efficient approaches to significantly improve the depth of proteome coverage. In this study, a simple and integrated spintip-based protein digestion and three-dimensional peptide fractionation technology (3D-SISPROT) was developed for the deep proteome profiling from low microgram of proteins as starting materials. All the sample preparation steps, including protein digestion, strong anion exchange (SAX)-based fractionation, and high-pH reversed phase (RP) fractionation were integrated into one pipette tip packed with SAX and C membranes for the first time. The SAX plus C membranes design minimizes the sample loss and ensures high efficient SAX-based digestion. 4275 proteins were identified with 1.4h of MS time when 6μg cell lysates was processed. More importantly, the SAX-based digestion procedure did not influence the SAX-based peptide fractionation efficiency which was done in the same SAX membrane. The 3D-SISPROT was exemplified by the analysis of 30μg of HEK 293T cell lysates with 20.4h of MS time, which resulted in the identification of 8222 proteins including 3215 annotated membrane proteins. Gene Ontology annotations indicated that the 3D-SISPROT was unbiased for the proteins from major cellular components. Taking advantages of the efficient SAX-based and high-pH RP-based fractionation strategies, we expect that the 3D-SISPROT can be applied for the deep proteome profiling with limited starting material.
多维肽分级分离策略已被公认为是显著提高蛋白质组覆盖深度的有效方法。在本研究中,开发了一种基于简易一体式移液枪头的蛋白质消化和三维肽分级分离技术(3D-SISPROT),用于以低微克量蛋白质为起始材料进行深度蛋白质组分析。首次将所有样品制备步骤,包括蛋白质消化、基于强阴离子交换(SAX)的分级分离和高pH值反相(RP)分级分离,整合到一个装有SAX和C膜的移液枪头中。SAX加C膜的设计将样品损失降至最低,并确保基于SAX的高效消化。当处理6μg细胞裂解物时,在1.4小时的质谱分析时间内鉴定出4275种蛋白质。更重要的是,基于SAX的消化过程不影响在同一SAX膜上进行的基于SAX的肽分级分离效率。以对30μg HEK 293T细胞裂解物进行20.4小时质谱分析时间的分析为例,3D-SISPROT鉴定出8222种蛋白质,其中包括3215种注释的膜蛋白。基因本体注释表明,3D-SISPROT对来自主要细胞成分的蛋白质没有偏向性。利用基于SAX的高效和基于高pH值RP的分级分离策略,我们期望3D-SISPROT可应用于起始材料有限的深度蛋白质组分析。