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Unraveling the Composition and Behavior of Heterogeneous Lipid Nanodiscs by Mass Spectrometry

机译:质谱揭示异构脂质纳米盘的组成和行为

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Mass spectrometry (MS) has emerged as a powerful tool to study membrane protein complexes and protein lipid interactions. Because they provide a precisely defined lipid bilayer environment, lipoprotein Nanodiscs offer a promising cassette for membrane protein MS analysis. However, heterogeneous lipids create several potential challenges for native MS: additional spectral complexity, ambiguous assignments, and differing gas phase behaviors. Here, we present strategies to address these challenges and streamline analysis of heterogeneous-lipid Nano discs. We show that using two lipids of similar mass limits the complexity of the spectra in heterogeneous Nanodiscs and that the lipid composition can be determined by using a dual Fourier transform approach to obtain the average lipid mass. Further, the relationship between gas-phase behavior, lipid composition, and instrumental polarity was investigated to determine the effects of lipid headgroup chemistry on Nanodisc dissociation mechanisms. These results provide unique mechanistic and methodological insights into characterization of complex and heterogeneous systems by mass spectrometry.
机译:质谱(MS)已成为研究膜蛋白复合物和蛋白脂质相互作用的强大工具。因为它们提供了精确定义的脂质双层环境,所以脂蛋白纳米碟片为膜蛋白MS分析提供了一种有前途的盒式磁带。但是,异质脂质为天然MS带来了若干潜在挑战:额外的光谱复杂性,模棱两可的归属以及不同的气相行为。在这里,我们提出了应对这些挑战的战略,并简化了异构脂质纳米光盘的分析。我们表明,使用两个质量相似的脂质限制了异质纳米圆盘中光谱的复杂性,并且可以通过使用双重傅里叶变换方法来确定平均脂质质量来确定脂质组成。此外,研究了气相行为,脂质组成和仪器极性之间的关系,以确定脂质头基化学对纳米圆盘解离机理的影响。这些结果为通过质谱表征复杂和异构系统提供了独特的机理和方法学见解。

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