Okada A, Wakamatsu K, Miyazawa T, Higashijima T
Tsukuba Research Laboratory, Sumitomo Chemical Company, Ltd., Ibaraki, Japan.
Biochemistry. 1994 Aug 16;33(32):9438-46. doi: 10.1021/bi00198a009.
We determined a detailed conformation of the honeybee venom peptide melittin when bound to phosphatidylcholine vesicles using proton NMR. In the presence of vesicles of perdeuterated dipalmitoylglycerophosphocholine, two-dimensional transferred nuclear Overhauser enhancement (TRNOE) experiments were carried out. By a distance geometry calculation using NOE-derived distance constraints followed by a simulated annealing refinement, the N-terminal (Leu6-Leu10) and C-terminal (Leu13-Lys21) parts were found to have an alpha-helical conformation, whereas five C-terminal residues (Arg22-Gln26) did not show a unique conformation in the vesicle-bound state. The two alpha-helices were connected via a less structured segment (Thr11-Gly12) with a helix bend angle of 86 degrees +/- 34 degrees. Model distance geometry calculations using distance constraints extracted from a tetrameric melittin molecule in crystal assured us that the NOE constraints can accurately reproduce melittin's structure, as well as helping to interpret the NMR structures. Although the vesicle-bound conformation of melittin is similar to that occurring in a methanol solution and in dodecylphosphocholine micelles, significant differences were found in the conformation of C-terminal basic residues and the helix bend angle. This is the first study to clearly demonstrate conformation differences in micelle- and vesicle-bound peptides. In addition, lytic activity of melittin and its analogs showed better correlation with a peptide conformation in vesicles than in either methanol or micelles.
我们利用质子核磁共振确定了蜜蜂毒液肽蜂毒肽与磷脂酰胆碱囊泡结合时的详细构象。在全氘代二棕榈酰甘油磷酸胆碱囊泡存在的情况下,进行了二维转移核Overhauser增强(TRNOE)实验。通过使用源自NOE的距离约束进行距离几何计算,随后进行模拟退火优化,发现N端(Leu6 - Leu10)和C端(Leu13 - Lys21)部分具有α-螺旋构象,而五个C端残基(Arg22 - Gln26)在囊泡结合状态下未显示出独特的构象。这两个α-螺旋通过一个结构较少的片段(Thr11 - Gly12)连接,螺旋弯曲角度为86度±34度。使用从晶体中的四聚体蜂毒肽分子提取的距离约束进行的模型距离几何计算向我们保证,NOE约束能够准确再现蜂毒肽的结构,同时有助于解释核磁共振结构。尽管蜂毒肽的囊泡结合构象与在甲醇溶液和十二烷基磷酸胆碱胶束中出现的构象相似,但在C端碱性残基的构象和螺旋弯曲角度方面发现了显著差异。这是首次明确证明胶束结合和囊泡结合肽构象差异的研究。此外,蜂毒肽及其类似物的溶血活性与肽在囊泡中的构象比在甲醇或胶束中的构象具有更好的相关性。