Department of Medicinal Chemistry, Box 357610, University of Washington, Seattle, WA 98195-7610, United States.
Department of Medicinal Chemistry, Box 357610, University of Washington, Seattle, WA 98195-7610, United States.
Chem Phys Lipids. 2019 May;220:14-22. doi: 10.1016/j.chemphyslip.2019.02.007. Epub 2019 Feb 22.
Hydrogen deuterium exchange mass spectrometry (H/DX MS) provides a quantitative comparison of the relative rates of exchange of amide protons for solvent deuterons. In turn, the rate of amide exchange depends on a complex combination of the stability of local secondary structure, solvent accessibility, and dynamics. H/DX MS has, therefore, been widely used to probe structure and function of soluble proteins, but its application to membrane proteins was limited previously to detergent solubilized samples. The large excess of lipids from model membranes, or from membrane fractions derived from in vivo samples, presents challenges with mass spectrometry. The lipid nanodisc platform, consisting of apolipoprotein A-derived membrane scaffold proteins, provides a native like membrane environment in which to capture analyte membrane proteins with a well defined, and low, ratio of lipid to protein. Membrane proteins in lipid nanodiscs are amenable to H/DX MS, and this is expected to lead to a rapid increase in the number of membrane proteins subjected to this analysis. Here we review the few literature examples of the application of H/DX MS to membrane proteins in nanodiscs. The incremental improvements in the experimental workflow of the H/DX MS are described and potential applications of this approach to study membrane proteins are described.
氘氢交换质谱(H/DX MS)可提供酰胺质子与溶剂氘交换相对速率的定量比较。反过来,酰胺交换的速率取决于局部二级结构、溶剂可及性和动力学稳定性的复杂组合。因此,H/DX MS 已广泛用于探测可溶性蛋白质的结构和功能,但以前其在膜蛋白中的应用仅限于去污剂溶解的样品。来自模型膜或来自体内样品衍生的膜部分的大量脂质,给质谱带来了挑战。脂质纳米盘平台由载脂蛋白 A 衍生的膜支架蛋白组成,在该平台中可以捕获具有明确且低脂质与蛋白比的分析物膜蛋白,从而提供类似天然的膜环境。脂质纳米盘中的膜蛋白可进行 H/DX MS 实验,预计这将导致进行这种分析的膜蛋白数量迅速增加。本文综述了少数关于 H/DX MS 在纳米盘中应用于膜蛋白的文献实例。描述了 H/DX MS 实验工作流程的改进,并描述了该方法在研究膜蛋白方面的潜在应用。