Ablonczy Z, Kono M, Crouch R K, Knapp D R
Department of Ophthalmology, Medical University of South Carolina, Charleston 29425, USA.
Anal Chem. 2001 Oct 15;73(20):4774-9. doi: 10.1021/ac015563n.
Integral membrane proteins produced by eukaryotic expression systems are a subject of much current interest in biomedical investigation. Due to the low efficiency of their expression and the limited quantity of the expressed to the total amount of the membrane proteins, they have evaded mass spectrometric analysis. The methodology previously developed for mass spectrometric analysis of integral membrane proteins required proteins that were obtained relatively pure from their native membranes. The previously developed methodology has been modified and applied to the analysis of subnanomolar samples of rhodopsin. Bovine rhodopsin purified by affinity chromatography, from native membranes and from a eukaryotic expression system, was successfully analyzed, obtaining complete sequence coverage for the detection and localization of posttranslational modifications. The methodology presented here will enable mass spectrometric analysis of subnanomolar levels of photopigments or other integral membrane proteins either from their native membranes or as products of expression systems.
真核表达系统产生的整合膜蛋白是当前生物医学研究中备受关注的课题。由于其表达效率低以及表达量在膜蛋白总量中所占比例有限,它们一直难以进行质谱分析。先前开发的用于整合膜蛋白质谱分析的方法需要从天然膜中获得相对纯净的蛋白质。对先前开发的方法进行了改进,并将其应用于视紫红质亚纳摩尔样品的分析。通过亲和色谱从天然膜和真核表达系统中纯化得到的牛视紫红质成功进行了分析,获得了用于检测和定位翻译后修饰的完整序列覆盖。本文介绍的方法将能够对来自天然膜或作为表达系统产物的亚纳摩尔水平的光色素或其他整合膜蛋白进行质谱分析。