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胶束对电喷雾电离质谱中蛋白质与脂质结合的影响。

Effects of Detergent Micelles on Lipid Binding to Proteins in Electrospray Ionization Mass Spectrometry.

机构信息

Department of Chemistry, Physical & Theoretical Chemistry Laboratory, University of Oxford , South Parks Road, Oxford, Oxfordshire OX1 3QZ, United Kingdom.

Department of Chemistry, Uppsala Biomedical Centre, Uppsala University , Box 576, SE-751 23 Uppsala, Sweden.

出版信息

Anal Chem. 2017 Jul 18;89(14):7425-7430. doi: 10.1021/acs.analchem.7b00922. Epub 2017 Jul 3.

Abstract

A wide variety of biological processes rely upon interactions between proteins and lipids, ranging from molecular transport to the organization of the cell membrane. It was recently established that electrospray ionization mass spectrometry (ESI-MS) is capable of capturing transient interactions between membrane proteins and their lipid environment, and a detailed understanding of the underlying processes is therefore of high importance. Here, we apply ESI-MS to investigate the factors that govern complex formation in solution and gas phases by comparing nonselective lipid binding with soluble and membrane proteins. We find that exogenously added lipids did not bind to soluble proteins, suggesting that lipids have a low propensity to form electrospray ionization adducts. The presence of detergents at increasing micelle concentrations, on the other hand, resulted in moderate lipid binding to soluble proteins. A direct ESI-MS comparison of lipid binding to the soluble protein serum albumin and to the integral membrane protein NapA shows that soluble proteins acquire fewer lipid adducts. Our results suggest that protein-lipid complexes form via contacts between proteins and mixed lipid/detergent micelles. For soluble proteins, these complexes arise from nonspecific contacts between the protein and detergent/lipid micelles in the electrospray droplet. For membrane proteins, lipids are incorporated into the surrounding micelle in solution, and complex formation occurs independently of the ESI process. We conclude that the lipids in the resulting complexes interact predominantly with sites located in the transmembrane segments, resulting in nativelike complexes that can be interrogated by MS.

摘要

各种生物过程都依赖于蛋白质和脂质之间的相互作用,从分子运输到细胞膜的组织。最近已经确定,电喷雾电离质谱(ESI-MS)能够捕获膜蛋白与其脂质环境之间的瞬时相互作用,因此深入了解其潜在过程非常重要。在这里,我们通过比较非选择性脂质结合与可溶性和膜蛋白,应用 ESI-MS 来研究影响溶液和气相中复合物形成的因素。我们发现,外源性添加的脂质不会与可溶性蛋白结合,这表明脂质形成电喷雾电离加合物的倾向较低。另一方面,随着胶束浓度的增加,表面活性剂的存在导致可溶性蛋白适度结合脂质。对可溶性蛋白血清白蛋白和整合膜蛋白 NapA 与脂质结合的直接 ESI-MS 比较表明,可溶性蛋白获得的脂质加合物较少。我们的结果表明,蛋白质-脂质复合物通过蛋白质与混合脂质/表面活性剂胶束之间的接触形成。对于可溶性蛋白,这些复合物源自电喷雾液滴中蛋白质与表面活性剂/脂质胶束之间的非特异性接触。对于膜蛋白,脂质在溶液中掺入周围胶束中,并且复合物的形成独立于 ESI 过程。我们得出的结论是,形成复合物的脂质主要与位于跨膜片段中的位点相互作用,导致可以通过 MS 检测到的天然样复合物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/df3d/5559180/cccd98c5a9f6/ac-2017-00922y_0001.jpg

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