Detergent-free isolation, characterization, and functional reconstitution of a tetrameric K+ channel: The power of native nanodiscs

被引:247
作者
Dorr, Jonas M. [1 ]
Koorengevel, Martijn C. [1 ]
Schafer, Marre [1 ]
Prokofyev, Alexander V. [2 ]
Scheidelaar, Stefan [1 ]
van der Cruijsen, Elwin A. W. [2 ]
Dafforn, Timothy R. [3 ]
Baldus, Marc [2 ]
Killian, J. Antoinette [1 ]
机构
[1] Univ Utrecht, Bijvoet Ctr Biomol Res, NL-3584 CH Utrecht, Netherlands
[2] Univ Utrecht, Bijvoet Ctr Biomol Res, NMR Spect, NL-3584 CH Utrecht, Netherlands
[3] Univ Birmingham, Sch Biosci, Birmingham B15 2TT, W Midlands, England
基金
英国生物技术与生命科学研究理事会;
关键词
membrane-protein solubilization; styrene-maleic acid copolymer; lipid-protein interactions; nanodisc; ion channels; MEMBRANE-PROTEINS; ION-CHANNEL; ESCHERICHIA-COLI; LIPID-BINDING; KCSA; STABILITY; SOLUBILIZATION; PHOSPHOLIPIDS; NANOPARTICLES; AMPHIPHILES;
D O I
10.1073/pnas.1416205112
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
A major obstacle in the study of membrane proteins is their solubilization in a stable and active conformation when using detergents. Here, we explored a detergent-free approach to isolating the tetrameric potassium channel KcsA directly from the membrane of Escherichia coli, using a styrene-maleic acid copolymer. This polymer self-inserts into membranes and is capable of extracting membrane patches in the form of nanosize discoidal proteolipid particles or "native nanodiscs." Using circular dichroism and tryptophan fluorescence spectroscopy, we show that the conformation of KcsA in native nanodiscs is very similar to that in detergent micelles, but that the thermal stability of the protein is higher in the nanodiscs. Furthermore, as a promising new application, we show that quantitative analysis of the co-isolated lipids in purified KcsA-containing nanodiscs allows determination of preferential lipid-protein interactions. Thin-layer chromatography experiments revealed an enrichment of the anionic lipids cardiolipin and phosphatidylglycerol, indicating their close proximity to the channel in biological membranes and supporting their functional relevance. Finally, we demonstrate that KcsA can be reconstituted into planar lipid bilayers directly from native nanodiscs, which enables functional characterization of the channel by electrophysiology without first depriving the protein of its native environment. Together, these findings highlight the potential of the use of native nanodiscs as a tool in the study of ion channels, and of membrane proteins in general.
引用
收藏
页码:18607 / 18612
页数:6
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