Jin Lian Ji, Ferrance Jerome, Sanders Joshua C, Landers James P
Department of Chemistry, University of Virginia, Charlottesville, VA 22904, USA.
Lab Chip. 2003 Feb;3(1):11-8. doi: 10.1039/b209579n. Epub 2003 Jan 16.
Microchip-based proteomic analysis requires proteolytic digestion of proteins in microdevices. Enzyme reactors in microdevices, fabricated in glass, silicon, and PDMS substrates, have recently been demonstrated for model protein digestions. The common approach used for these enzyme reactors is employment of a syringe pump(s) to generate hydrodynamic flow, driving the proteins through the reactors. Here we present a novel approach, using electroosmotic flow (EOF) to electrokinetically pump proteins through a proteolytic system. The existence of EOF in the proteolytic system packed with immobilized trypsin gel beads was proven by imaging the movement of a neutral fluorescent marker. Digestions of proteins were subsequently carried out for 12 min, and the tryptic peptides were analyzed independently using capillary electrophoresis (CE) and MALDI-TOF mass spectrometry (MS). The results from CE analysis of the tryptic peptides from the EOF-driven proteolytic system and a conventional water bath digestion were comparable. MALDI-TOF MS was used to identify the parent protein and the tryptic peptides using MS-Fit database searching. The potential utility of the EOF-driven proteolytic system was demonstrated by direct electro-elution of proteins from an acrylamide gel into the proteolytic system, with elution and tryptic digestion achieved in a single step. The EOF-driven proteolytic system, thus, provides a simple way to integrate protein digestion into an electrophoretic micro total analysis system for protein analysis and characterization.
基于微芯片的蛋白质组学分析需要在微器件中对蛋白质进行蛋白酶解。最近已证明,在玻璃、硅和聚二甲基硅氧烷(PDMS)基板上制造的微器件中的酶反应器可用于模型蛋白质消化。这些酶反应器常用的方法是使用注射泵产生流体动力流,驱动蛋白质通过反应器。在此,我们提出一种新方法,利用电渗流(EOF)通过蛋白水解系统电动泵送蛋白质。通过对中性荧光标记物的移动进行成像,证明了在填充有固定化胰蛋白酶凝胶珠的蛋白水解系统中存在电渗流。随后对蛋白质进行12分钟的消化,并分别使用毛细管电泳(CE)和基质辅助激光解吸电离飞行时间质谱(MALDI-TOF MS)对胰蛋白酶肽进行分析。来自电渗流驱动的蛋白水解系统和传统水浴消化的胰蛋白酶肽的CE分析结果具有可比性。使用MALDI-TOF MS通过MS-Fit数据库搜索来鉴定亲本蛋白质和胰蛋白酶肽。通过将蛋白质从丙烯酰胺凝胶直接电洗脱到蛋白水解系统中,在一步中实现洗脱和胰蛋白酶消化,证明了电渗流驱动的蛋白水解系统的潜在实用性。因此,电渗流驱动的蛋白水解系统提供了一种将蛋白质消化整合到用于蛋白质分析和表征的电泳微全分析系统中的简单方法。