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Elucidation of Conformer Preferences for a Hydrophobic Antimicrobial Peptide by Vesicle Capture-Freeze-Drying: A Preparatory Method Coupled to Ion Mobility-Mass Spectrometry

机译:囊泡捕获-冷冻-干燥阐明疏水性抗菌肽的保守异构体偏好性:一种结合离子淌度-质谱的制备方法

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A novel sample preparation method to probe the solution phase structure of dimerized Gramicidin A (GA) inserted into lipid vesicle bilayers is described. This method, termed vesicle capture-freeze-drying (VCFD), when coupled with electrospray ionization-ion mobility-mass spectrometry (ESI-IM-MS), successfully demonstrates the first evidence for the preservation of membrane-bound structure in the analysis of solution phase conformers retained into the gas phase. The extremely hydrophobic character of GA ensures that only membrane-bound conformations are captured and subsequently monitored when samples are prepared using VCFD, removing a barrier that has prevented previous attempts at direct analysis using mass spectrometry. Solution-phase physicochemical interactions of GA influenced by lipid acyl chain length and extent of acyl chain unsaturation can now be probed by monitoring the conformer preferences using IM-MS. Increasing the acyl chain length from 12 to 22 carbons yields [2GA + 2Na](2)(+) IM-MS profiles with reduced conformer microheterogeneity. POPC (16:0, 18:1 PC), a lipid possessing a single acyl chain unsaturation point, yields the highest abundance of the single stranded head to head (SSHH) conformer. Conformer preferences adopted in the lipid bilayer are maintained as GA dimers travel from the solution phase to fully desolvated gas-phase ions demonstrating that distributions observed using ESI-IM-MS unambiguously reflect the ensemble of conformers observed in the solution phase. VCFD-ESI-IM-MS yields novel biophysical insight into the influence of lipid bilayer membranes on conformer preferences and conformer heterogeneity of an important channel-forming membrane peptide.
机译:描述了一种新的样品制备方法,用于探测插入脂质囊泡双层中的二聚化的Gramicidin A(GA)的溶液相结构。结合电喷雾电离-离子淌度-质谱(ESI-IM-MS),这种称为囊泡捕获-冻干(VCFD)的方法成功地证明了膜结合结构的保存的初步证据。固溶相构象异构体保留在气相中。 GA具有极强的疏水性,可确保在使用VCFD制备样品时仅捕获并结合膜结合的构象,从而消除了阻碍以前使用质谱直接分析的障碍。现在,可以通过使用IM-MS监测构象异构体的偏好,探索受脂质酰基链长度和酰基链不饱和程度影响的GA的溶液相物理化学相互作用。酰基链长度从12个碳增加到22个碳会生成[2GA + 2Na](2)(+)IM-MS谱,其构象异构性降低。 POPC(16:0,18:1 PC)是一种具有单个酰基链不饱和点的脂质,可产生单链头对头(SSHH)构象异构体的最高丰度。当GA二聚体从溶液相转移到完全去溶剂化的气相离子时,脂质双层中采用的共形异构体偏好得以保持,这表明使用ESI-IM-MS观察到的分布明确反映了在溶液相中观察到的构象异构体的集合。 VCFD-ESI-IM-MS对脂质双层膜对重要通道形成膜肽的构象异构体偏好和构象异构体异质性的影响产生了新的生物物理学见解。

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