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提高氢/氘交换质谱实验中整合膜蛋白的序列覆盖率。

Improving the Sequence Coverage of Integral Membrane Proteins during Hydrogen/Deuterium Exchange Mass Spectrometry Experiments.

机构信息

Department of Pharmacy , University of Copenhagen , Universitetsparken 2 , Copenhagen E DK-2100 , Denmark.

BioCeV - Institute of Microbiology of the CAS , Prumyslova 595 , CZ-252 50 Vestec , Czech Republic.

出版信息

Anal Chem. 2019 Sep 3;91(17):10970-10978. doi: 10.1021/acs.analchem.9b00973. Epub 2019 Aug 13.

Abstract

Insight into the structure-function relationship of membrane proteins is important to understand basic cell function and inform drug development, as these are common targets for drugs. Hydrogen/deuterium exchange mass spectrometry (HDX-MS) is an established technique for the study of protein conformational dynamics and has shown compatibility with membrane proteins. However, the digestion and mass analysis of peptides from membrane proteins can be challenging, severely limiting the HDX-MS experiment. Here we compare the digestion of four integral membrane proteins-Cl/H exchange transporter (ClC-ec1), leucine transporter (LeuT), dopamine transporter (DAT), and serotonin transporter (SERT)-by the use of porcine pepsin and three alternative aspartic proteases either in-solution or immobilized on-column in an optimized HDX-MS-compatible workflow. Pepsin was the most favorable for the digestion of ClC-ec1 and LeuT, providing coverage of 82.2 and 33.2% of the respective protein sequence; however, the alternative proteases surpassed pepsin for the digestion of DAT and SERT. By also screening quench solution additives, we observe that the denaturant urea was beneficial, resulting in improved sequence coverage of all membrane proteins, in contrast to guanidine hydrochloride. Furthermore, significant improvements in sequence coverage were achieved by tailoring the chromatography to handle hydrophobic peptides. Overall, we demonstrate that the susceptibility of membrane proteins to proteolytic digestion during HDX-MS is highly protein-specific. Our results highlight the importance of having multiple proteases and different quench buffer additives in the HDX-MS toolbox and the need to carefully screen a range of digestion conditions to successfully optimize the HDX-MS analysis of integral membrane proteins.

摘要

深入了解膜蛋白的结构-功能关系对于理解基本细胞功能和指导药物开发至关重要,因为这些是药物的常见靶点。氢/氘交换质谱(HDX-MS)是研究蛋白质构象动力学的一种成熟技术,并且已经显示出与膜蛋白的兼容性。然而,从膜蛋白中消化和分析肽段具有挑战性,这极大地限制了 HDX-MS 实验。在这里,我们比较了使用猪胃蛋白酶和三种替代的天冬氨酸蛋白酶在溶液中或在优化的 HDX-MS 兼容工作流程中在柱上固定化对四种整合膜蛋白-Cl/H 交换转运蛋白(ClC-ec1)、亮氨酸转运蛋白(LeuT)、多巴胺转运蛋白(DAT)和血清素转运蛋白(SERT)的消化情况。胃蛋白酶最有利于 ClC-ec1 和 LeuT 的消化,分别提供了 82.2%和 33.2%的蛋白质序列覆盖率;然而,替代蛋白酶在 DAT 和 SERT 的消化方面超过了胃蛋白酶。通过筛选淬火溶液添加剂,我们观察到变性剂尿素是有益的,与盐酸胍相反,这导致所有膜蛋白的序列覆盖率都得到了改善。此外,通过定制色谱来处理疏水性肽,可显著提高序列覆盖率。总的来说,我们证明了膜蛋白在 HDX-MS 过程中对蛋白水解消化的敏感性高度依赖于蛋白质本身。我们的结果强调了在 HDX-MS 工具包中拥有多种蛋白酶和不同淬火缓冲添加剂的重要性,并且需要仔细筛选一系列消化条件,以成功优化整合膜蛋白的 HDX-MS 分析。

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