Whitelegge J P, Gundersen C B, Faull K F
Center for Molecular and Medical Sciences Mass Spectrometry, Department of Chemistry & Biochemistry, University of California, Los Angeles 90095-1569, USA.
Protein Sci. 1998 Jun;7(6):1423-30. doi: 10.1002/pro.5560070619.
Membrane proteins drive and mediate many essential cellular processes making them a vital section of the proteome. However, the amphipathic nature of these molecules ensures their detailed structural analysis remains challenging. A versatile procedure for effective electrospray-ionization mass spectrometry (ESI-MS) of intact intrinsic membrane proteins purified using reverse-phase chromatography in aqueous formic acid/isopropanol is presented. The spectra of four examples, bacteriorhodopsin and its apoprotein from Halobacterium and the D1 and D2 reaction-center subunits from spinach thylakoids, achieve mass measurements that are within 0.01% of calculated theoretical values. All of the spectra reveal lesser quantities of other molecular species that can usually be equated with covalently modified subpopulations of these proteins. Our analysis of bovine rhodopsin, the first ESI-MS study of a G-protein coupled receptor, yielded a complex spectrum indicative of extensive molecular heterogeneity. The range of masses measured for the native molecule agrees well with the range calculated based upon variable glycosylation and reveals further heterogeneity arising from other covalent modifications. The technique described represents the most precise way to catalogue membrane proteins and their post-translational modifications. Resolution of the components of protein complexes provides insights into native protein/protein interactions. The apparent retention of structure by bacteriorhodopsin during the analysis raises the potential of obtaining tertiary structure information using more developed ESI-MS experiments.
膜蛋白驱动并介导许多重要的细胞过程,使其成为蛋白质组的重要组成部分。然而,这些分子的两亲性确保了对其进行详细的结构分析仍然具有挑战性。本文介绍了一种通用方法,用于对使用反相色谱法在甲酸/异丙醇水溶液中纯化的完整内在膜蛋白进行有效的电喷雾电离质谱分析(ESI-MS)。四个示例的光谱,即来自嗜盐菌的细菌视紫红质及其脱辅基蛋白,以及来自菠菜类囊体的D1和D2反应中心亚基,其质量测量值与计算出的理论值相差在0.01%以内。所有光谱都显示出较少量的其他分子种类,这些种类通常可等同于这些蛋白质的共价修饰亚群。我们对牛视紫红质的分析,这是对G蛋白偶联受体的首次ESI-MS研究,产生了一个复杂的光谱,表明存在广泛的分子异质性。对天然分子测量的质量范围与基于可变糖基化计算出的范围非常吻合,并揭示了由其他共价修饰引起的进一步异质性。所描述的技术是对膜蛋白及其翻译后修饰进行编目的最精确方法。蛋白质复合物成分的解析为天然蛋白质/蛋白质相互作用提供了见解。细菌视紫红质在分析过程中明显保留了结构,这增加了使用更先进的ESI-MS实验获得三级结构信息(的可能性)。