Ablonczy Zsolt, Crouch Rosalie K, Knapp Daniel R
Department of Ophthalmology, Medical University of South Carolina, 171 Ashley Avenue, Charleston, SC 29425, USA.
J Chromatogr B Analyt Technol Biomed Life Sci. 2005 Oct 25;825(2):169-75. doi: 10.1016/j.jchromb.2005.02.022. Epub 2005 Apr 14.
Integral membrane proteins are among the most interesting molecules for biomedical research, as some of the most important cellular functions are inherently tied to biological membranes. One such example is the vast expanse of receptors on cell surfaces. However, due to difficulties in the biochemical purification and structure/function analysis of membrane proteins, caused by their hydrophobic or amphophilic nature, membrane proteins are still much less studied than soluble proteins. Our laboratory has successfully developed and applied a methodology for the mass spectrometric analysis of integral membrane proteins. Here, we present an improvement in the sensitivity of detection made possible by the advancement of mass spectrometric instrumentation and refinement of the chromatographic analysis. Subpicomolar samples of bovine rhodopsin purified from native membranes were successfully analyzed, obtaining complete sequence coverage and the detection and localization of posttranslational modifications. Therefore, it is demonstrated that the detection limits and sequence coverage for soluble and membrane proteins can be comparable. The methodology presented here allows mass spectrometric analysis of subpicomolar levels of photopigments or other integral membrane proteins either from their native membranes or as products of expression systems.
整合膜蛋白是生物医学研究中最有趣的分子之一,因为一些最重要的细胞功能本质上与生物膜相关。一个这样的例子是细胞表面大量的受体。然而,由于膜蛋白具有疏水性或两亲性,导致其生化纯化以及结构/功能分析存在困难,与可溶性蛋白相比,膜蛋白的研究仍然少得多。我们实验室已成功开发并应用了一种用于整合膜蛋白质谱分析的方法。在此,我们展示了由于质谱仪器的进步和色谱分析的优化而实现的检测灵敏度的提高。成功分析了从天然膜中纯化的亚皮摩尔级牛视紫红质样品,获得了完整的序列覆盖以及翻译后修饰的检测和定位。因此,证明了可溶性蛋白和膜蛋白的检测限和序列覆盖可以相当。本文介绍的方法允许对来自天然膜或作为表达系统产物的亚皮摩尔水平的光色素或其他整合膜蛋白进行质谱分析。