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Structure of Self-Aggregated Alamethicin in ePC Membranes Detected by Pulsed Electron-Electron Double Resonance and Electron Spin Echo Envelope Modulation Spectroscopies

机译:脉冲电子-电子双共振和电子自旋回波包络调制光谱法检测ePC膜中自聚集的Alamethicin的结构

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摘要

PELDOR spectroscopy was exploited to study the self-assembled super-structure of the [Glu(OMe)(7,18,19)]alamethicin molecules in vesicular membranes at peptide to lipid molar ratios in the range of 1:70-1:200. The peptide molecules were site-specifically labeled with TOAC electron spins. From the magnetic dipole-dipole interaction between the nitroxides of the monolabeled constituents and the PELDOR decay patterns measured at 77 K, intermolecular-distance distribution functions were obtained and the number of aggregated molecules (n approximate to 4) was estimated. The distance distribution functions exhibit a similar maximum at 2.3 nm. In contrast to Alm16, for Alm1 and Alm8 additional maxima were recorded at 3.2 and similar to 5.2 nm. From ESEEM experiments and based on the membrane polarity profiles, the penetration depths of the different spin-labeled positions into the membrane were qualitatively estimated. It was found that the water accessibility of the spin-labels follows the order TOAC-1 > TOAC-8 approximate to TCAC-16. The geometric data obtained are discussed in terms of a penknife molecular model. At least two peptide chains are aligned parallel and eight ester groups of the polar Glu(OMe)(18,19) residues are suggested to stabilize the self-aggregate superstructure.
机译:利用PELDOR光谱技术研究了肽与脂质的摩尔比为1:70-1:200的水泡膜中的[Glu(OMe)(7,18,19)]丙氨苄青霉素分子的自组装超结构。 。肽分子用TOAC电子自旋位点特异性标记。根据单标记成分的氮氧化物与在77 K下测得的PELDOR衰减模式之间的磁偶极-偶极相互作用,获得了分子间距离分布函数,并估计了聚集分子的数量(n约为4)。距离分布函数在2.3 nm处表现出相似的最大值。与Alm16相比,Alm1和Alm8在3.2处记录了其他最大值,与5.2 nm相似。根据ESEEM实验并基于膜极性分布,定性地估计了不同自旋标记位置进入膜的穿透深度。发现自旋标签的水可及性遵循近似于TCAC-16的顺序TOAC-1> TOAC-8。根据小刀分子模型讨论了获得的几何数据。建议至少两个肽链平行排列,极性Glu(OMe)(18,19)残基的八个酯基可稳定自聚集超结构。

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