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首页> 外文期刊>Biophysical Journal >Location and aggregation of the spin-labeled peptide trichogin GA IV in a phospholipid membrane as revealed by pulsed EPR.
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Location and aggregation of the spin-labeled peptide trichogin GA IV in a phospholipid membrane as revealed by pulsed EPR.

机译:如脉冲EPR所示,自旋标记肽trichogin GA IV在磷脂膜中的位置和聚集。

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摘要

The lipopeptaibol trichogin GA IV is a 10 amino acid-long residue and alpha-aminoisobutyric acid-rich antibiotic peptide of fungal origin. TOAC (2,2,6,6-tetramethylpiperidine-1-oxyl-4-amino-4-carboxylic acid) spin-labeled analogs of this membrane active peptide were investigated in hydrated bilayers of dipalmitoylphosphatidylcholine by electron spin echo envelope modulation (ESEEM) spectroscopy and pulsed electron-electron double resonance (PELDOR). Since, the ESEEM of the spin label appears to be strongly dependent on the presence of water molecules penetrated into the membrane, this phenomenon was used to study the location of this peptide in the membrane. This was achieved by comparing the ESEEM spectra for peptides labeled at different positions along the amino acid sequence with spectra known for lipids with spin labels at different positions along the hydrocarbon chain. To increase the ESEEM amplitude and to distinguish the hydrogen nuclei of water from lipid protons, membranes were hydrated withdeuterated water. The PELDOR spectroscopy technique was chosen to study peptide aggregation and to determine the mutual distance distribution of the spin-labeled peptides in the membrane. The location of the peptide in the membrane and its aggregation state were found to be dependent on the peptide concentration. At a low peptide/lipid molar ratio (less than 1:100) the nonaggregated peptide chain of the trichogin molecules lie parallel to the membrane surface, with TOAC at the 4th residue located near the 9th-11th carbon positions of the sn-2 lipid chain. Increasing this ratio up to 1:20 leads to a change in peptide orientation, with the N-terminus of the peptide buried deeper into membrane. Under these conditions peptide aggregates are formed with a mean aggregate number of about N = 2. The aggregates are further characterized by a broad range of intermolecular distances (1.5-4 nm) between the labels at the N-terminal residues. The major population exhibits a distance of approximately 2.5 nm, which is of thesame order as the length of the helical peptide. We suggest that the constituting monomers of the dimer are antiparallel oriented.
机译:脂肽甜菜素trichogin GA IV是一个10氨基酸长的残基,是真菌来源的富含α-氨基异丁酸的抗生素肽。通过电子自旋回波包络调制(ESEEM)在二棕榈酰磷脂酰胆碱的水合双层中研究了该膜活性肽的TOAC(2,2,6,6-四甲基哌啶-1-氧基-1-4-氨基-4-羧酸)自旋标记的类似物光谱学和脉冲电子双共振(PELDOR)。由于自旋标记的ESEEM似乎强烈依赖于渗透到膜中的水分子的存在,因此使用此现象来研究该肽在膜中的位置。这是通过将沿氨基酸序列不同位置标记的肽的ESEEM光谱与沿烃链不同位置具有旋转标记的脂质的光谱进行比较来实现的。为了增加ESEEM振幅并区分脂质质子中水的氢核,将膜与氘化水水合。选择PELDOR光谱技术来研究肽聚集并确定膜中自旋标记肽的相互距离分布。发现肽在膜中的位置及其聚集状态取决于肽浓度。在低的肽/脂质摩尔比(小于1:100)下,滴虫蛋白分子的未聚集肽链与膜表面平行,TOAC位于sn-2脂质第9-11位碳位置附近的第4个残基链。将该比例提高到1:20会导致肽的方向发生变化,其中肽的N端更深地埋入膜中。在这些条件下,形成的肽聚集体的平均聚集数约为N =2。该聚集体的特征还在于,在N端残基处的标记之间的分子间距离(1.5-4 nm)范围广。主要群体表现出约2.5nm的距离,该距离与螺旋肽的长度相同。我们建议二聚体的构成单体是反平行取向的。

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