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首页> 外文期刊>International journal of mass spectrometry >Hydrogen/deuterium exchange mass spectrometry and optical spectroscopy as complementary tools for studying the structure and dynamics of a membrane protein
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Hydrogen/deuterium exchange mass spectrometry and optical spectroscopy as complementary tools for studying the structure and dynamics of a membrane protein

机译:氢/氘交换质谱法和光谱法是研究膜蛋白结构和动力学的辅助工具

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The hydrophobic nature of membrane proteins poses considerable challenges for the application of traditional analytical techniques. Hydrogen/deuterium exchange (HDX) with electrospray mass spectrometry (ESI-MS) detection is a potentially very powerful approach for investigating the structure and dynamics of membrane proteins, but thus far this technique has been applied mostly to soluble species. By using ESI-MS in conjunction with low temperature size exclusion chromatography (SEC) the current study explores the global HDX behavior of the integral membrane protein bacteriorhodopsin (BR) under various conditions. The experiments are complemented by UV-vis absorption measurements that report on the environment of the protein's retinal chromophore and fluorescence spectroscopy which probes the extent of resonance energy transfer between Trp residues and retinal. In agreement with previous reports, our HDX data imply that amide hydrogens in the transmembrane helices of native BR are highly protected, whereas most sites in solvent-exposed loops are readily exchangeable. Low temperature SEC/ESI-MS allows the labile Schiff-base linkage between protein and retinal to be completely preserved, such that the HDX properties of co-existing protein populations can be monitored individually. Solubilization of BR in sodium dodecyl sulfate (SDS) induces major structural changes and hydrolytic loss of retinal. The SDS-denatured protein appears to retain a significant degree of stable helical structure (around 25%, compared to the native state value of 74%). Bicelle-mediated refolding of SDS-denatured bacterioopsin in the presence of free retinal regenerates a native-like BR conformation with a yield close to 0.9. The HDX/SEC/ESI-MS approach developed in this work should be applicable to other membrane protein systems as well.
机译:膜蛋白的疏水性对传统分析技术的应用提出了相当大的挑战。氢/氘交换(HDX)和电喷雾质谱(ESI-MS)检测是研究膜蛋白结构和动力学的潜在非常强大的方法,但到目前为止,该技术已主要应用于可溶性物种。通过将ESI-MS与低温尺寸排阻色谱法(SEC)结合使用,当前的研究探索了在各种条件下整体膜蛋白细菌视紫红质(BR)的整体HDX行为。该实验得到了紫外可见吸收测量的补充,该测量报告了该蛋白的视网膜发色团的环境和荧光光谱,用于探测Trp残基和视网膜之间共振能量转移的程度。与以前的报告一致,我们的HDX数据暗示天然BR的跨膜螺旋中的酰胺氢受到高度保护,而暴露于溶剂的环中的大多数位点易于互换。低温SEC / ESI-MS可以完全保留蛋白质和视网膜之间不稳定的席夫(Schiff)碱基连接,从而可以单独监视共存蛋白质群体的HDX特性。 BR在十二烷基硫酸钠(SDS)中的增溶诱导主要的结构变化和视网膜的水解损失。 SDS变性的蛋白质似乎保留了很大程度的稳定螺旋结构(大约25%,而原始状态值为74%)。在游离视网膜的存在下,比塞勒介导的SDS变性细菌球蛋白的重折叠可再生天然类似的BR构象,产量接近0.9。在这项工作中开发的HDX / SEC / ESI-MS方法也应适用于其他膜蛋白系统。

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