Lazar Iulia M, Deng Jingren, Smith Nicole
Biological Sciences, Virginia Tech;
Biological Sciences, Virginia Tech.
J Vis Exp. 2016 Apr 6(110):e53564. doi: 10.3791/53564.
The vast majority of mass spectrometry (MS)-based protein analysis methods involve an enzymatic digestion step prior to detection, typically with trypsin. This step is necessary for the generation of small molecular weight peptides, generally with MW < 3,000-4,000 Da, that fall within the effective scan range of mass spectrometry instrumentation. Conventional protocols involve O/N enzymatic digestion at 37 ºC. Recent advances have led to the development of a variety of strategies, typically involving the use of a microreactor with immobilized enzymes or of a range of complementary physical processes that reduce the time necessary for proteolytic digestion to a few minutes (e.g., microwave or high-pressure). In this work, we describe a simple and cost-effective approach that can be implemented in any laboratory for achieving fast enzymatic digestion of a protein. The protein (or protein mixture) is adsorbed on C18-bonded reversed-phase high performance liquid chromatography (HPLC) silica particles preloaded in a capillary column, and trypsin in aqueous buffer is infused over the particles for a short period of time. To enable on-line MS detection, the tryptic peptides are eluted with a solvent system with increased organic content directly in the MS ion source. This approach avoids the use of high-priced immobilized enzyme particles and does not necessitate any aid for completing the process. Protein digestion and complete sample analysis can be accomplished in less than ~3 min and ~30 min, respectively.
绝大多数基于质谱(MS)的蛋白质分析方法在检测之前都涉及酶解步骤,通常使用胰蛋白酶。这一步骤对于生成小分子量肽是必要的,这些肽的分子量一般小于3000 - 4000道尔顿,处于质谱仪器的有效扫描范围内。传统方案是在37℃下进行过夜酶解。最近的进展带来了多种策略的发展,通常包括使用固定化酶的微反应器或一系列互补的物理过程,这些过程可将蛋白水解消化所需的时间缩短至几分钟(例如,微波或高压)。在这项工作中,我们描述了一种简单且经济高效的方法,该方法可在任何实验室实施,以实现蛋白质的快速酶解。将蛋白质(或蛋白质混合物)吸附在预先装填于毛细管柱中的C18键合反相高效液相色谱(HPLC)硅胶颗粒上,然后将含胰蛋白酶的水性缓冲液在短时间内注入到颗粒上。为了实现在线MS检测,用有机含量增加的溶剂系统将胰蛋白酶解肽直接在MS离子源中洗脱。这种方法避免了使用高价的固定化酶颗粒,并且无需任何辅助手段来完成该过程。蛋白质消化和完整的样品分析分别可在不到约3分钟和约30分钟内完成。