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化学标记与质谱技术解析膜蛋白结构

Membrane protein structural insights from chemical labeling and mass spectrometry.

机构信息

Department of Chemistry, The University of Western Ontario, London, N6A 5B7, Canada.

出版信息

Analyst. 2010 Jun;135(6):1191-200. doi: 10.1039/b924805f. Epub 2010 Mar 4.

Abstract

Membrane proteins play a central role in virtually all biological processes, and they represent important drug targets. Unfortunately, the application of traditional high-resolution methods such as X-ray crystallography and NMR spectroscopy to membrane proteins remains challenging. This article reviews alternative approaches that involve chemical labeling and mass spectrometry (MS) for gaining insights into membrane protein structure, function, and interactions. Hydrogen/deuterium exchange MS represents an interesting avenue for exploring biomolecular conformations and dynamics, but thus far this technique has not been widely adopted for membrane protein studies. The main focus of this article is on the use of labeling agents that introduce covalent modifications in solvent-accessible protein regions. While it is possible to monitor the occurrence of single-site modifications using traditional biochemical methods or optical spectroscopy, the use of MS greatly enhances the scope and potential of this approach because multiple tagging events can be detected in parallel. The traditional bottom-up workflow of these studies involves the digestion of a chemically labeled membrane protein by a specific protease such as trypsin. This is followed by chromatographic separation of the resulting peptides and on-line electrospray ionization MS. The application of tandem MS allows pinpointing the exact locations of chemical modifications. A particularly exciting aspect is the applicability of covalent labeling techniques to membrane protein within their natural lipid environment, or even inside living cells. Some of these concepts will be illustrated using the oxidative labeling of bacteriorhodopsin as an example, but numerous other labeling agents and protein systems are being highlighted as well. It is hoped that this review will stimulate further developments in the characterization of membrane proteins.

摘要

膜蛋白在几乎所有的生物过程中都起着核心作用,它们是重要的药物靶点。不幸的是,传统的高分辨率方法,如 X 射线晶体学和 NMR 光谱学,应用于膜蛋白仍然具有挑战性。本文综述了涉及化学标记和质谱(MS)的替代方法,这些方法可用于深入了解膜蛋白的结构、功能和相互作用。氢/氘交换 MS 是探索生物分子构象和动态的一个有趣途径,但到目前为止,这项技术尚未广泛应用于膜蛋白研究。本文的主要重点是使用引入溶剂可及蛋白区域的共价修饰的标记试剂。虽然使用传统的生化方法或光学光谱学可以监测单一位点修饰的发生,但 MS 的使用大大增强了这种方法的范围和潜力,因为可以同时检测到多个标记事件。这些研究的传统自上而下的工作流程包括用特定的蛋白酶(如胰蛋白酶)消化化学标记的膜蛋白。接着是对得到的肽进行色谱分离和在线电喷雾电离 MS。串联 MS 的应用可以精确确定化学修饰的位置。一个特别令人兴奋的方面是共价标记技术在天然脂质环境或甚至在活细胞内应用于膜蛋白。一些概念将用细菌视紫红质的氧化标记来举例说明,但也强调了许多其他的标记试剂和蛋白质系统。希望这篇综述能激发膜蛋白特性描述的进一步发展。

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