Probing the Lipid Annular Belt by Gas-Phase Dissociation of Membrane Proteins in Nanodiscs.

Michael T Marty, Kin Kuan Hoi, Joseph Gault, Carol V Robinson
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引用次数: 7

Abstract

Interactions between membrane proteins and lipids are often crucial for structure and function yet difficult to define because of their dynamic and heterogeneous nature. Here, we use mass spectrometry to demonstrate that membrane protein oligomers ejected from nanodiscs in the gas phase retain large numbers of lipid interactions. The complex mass spectra that result from gas-phase dissociation were assigned using a Bayesian deconvolution algorithm together with mass defect analysis, allowing us to count individual lipid molecules bound to membrane proteins. Comparison of the lipid distributions measured by mass spectrometry with molecular dynamics simulations reveals that the distributions correspond to distinct lipid shells that vary according to the type of protein-lipid interactions. Our results demonstrate that nanodiscs offer the potential for native mass spectrometry to probe interactions between membrane proteins and the wider lipid environment.

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纳米圆盘膜蛋白气相解离探测脂质环状带。
膜蛋白和脂质之间的相互作用通常对结构和功能至关重要,但由于其动态和异质性而难以定义。在这里,我们使用质谱法证明了从纳米圆盘中喷射出的膜蛋白低聚物在气相中保留了大量的脂质相互作用。气相解离产生的复杂质谱使用贝叶斯反褶积算法和质量缺陷分析进行分配,使我们能够计算与膜蛋白结合的单个脂质分子。质谱法测量的脂质分布与分子动力学模拟的比较表明,分布对应于不同的脂质壳,这些脂质壳根据蛋白质-脂质相互作用的类型而变化。我们的研究结果表明,纳米圆盘为天然质谱法探测膜蛋白与更广泛的脂质环境之间的相互作用提供了潜力。
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