首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Structure and orientation of antibiotic peptide alamethicin in phospholipid bilayers as revealed by chemical shift oscillation analysis of solid state nuclear magnetic resonance and molecular dynamics
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Structure and orientation of antibiotic peptide alamethicin in phospholipid bilayers as revealed by chemical shift oscillation analysis of solid state nuclear magnetic resonance and molecular dynamics

机译:通过固态核磁共振的化学位移振荡分析和分子动力学揭示了磷脂双层中抗生素肽alamethicin的结构和取向

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The structure, topology and orientation of membrane-bound antibiotic alamethicin were studied using solid state nuclear magnetic resonance (NMR) spectroscopy. C-13 chemical shift interaction was observed in [1-C-13]-labeled alamethicin. The isotropic chemical shift values indicated that alamethicin forms a helical structure in the entire region. The chemical shift anisotropy of the carbonyl carbon of isotopically labeled alamethicin was also analyzed with the assumption that alamethicin molecules rotate rapidly about the bilayer normal of the phospholipid bilayers. It is considered that the adjacent peptide planes form an angle of 100 degrees or 120 degrees when it forms alpha-helix or 3(10)-helix, respectively. These properties lead to an oscillation of the chemical shift anisotropy with respect to the phase angle of the peptide plane. Anisotropic data were acquired for the 4 and 7 sites of the N- and C-termini, respectively. The results indicated that the helical axes for the N- and C-termini were tilted 17 degrees and 32 degrees to the bilayer normal, respectively. The chemical shift oscillation curves indicate that the N- and C-termini form the alpha-helix and 3(10)-helix, respectively. The C-terminal 3(10)-helix of alamethicin in the bilayer was experimentally observed and the unique bending structure of alamethicin was further confirmed by measuring the internuclear distances of [1-C-13] and [N-15] doubly-labeled alamethicin. Molecular dynamics simulation of alamethicin embedded into dimyristoyl phophatidylcholine (DMPC) bilayers indicates that the helical axes for alpha-helical N- and 3(10)-helical C-termini are tilted 12 degrees and 32 degrees to the bilayer normal, respectively, which is in good agreement with the solid state NMR results. (C) 2015 Elsevier B.V. All rights reserved.
机译:使用固态核磁共振(NMR)光谱研究了与膜结合的抗生素苦乐素的结构,拓扑和取向。在[1-C-13]标记的杀草霉素中观察到C-13化学位移相互作用。各向同性的化学位移值表明,乐果霉素在整个区域形成螺旋结构。还假设了伞果霉素分子围绕磷脂双层的法线双层快速旋转,并分析了同位素标记的伞果霉素的羰基碳的化学位移各向异性。认为当相邻的肽平面分别形成α-螺旋或3(10)-螺旋时,它们形成100度或120度的角度。这些性质导致化学位移各向异性相对于肽平面的相角的振荡。分别获取了N和C末端的4和7个位点的各向异性数据。结果表明,N末端和C末端的螺旋轴分别相对于双层法线倾斜了17度和32度。化学位移振荡曲线表明,N-末端和C-末端分别形成α-螺旋和3(10)-螺旋。实验观察到双层中乐果霉素的C-末端3(10)-螺旋,并通过测量[1-C-13]和[N-15]双标记的核间距进一步证实了乐果的独特弯曲结构来回霉素。嵌入二甲基马兜铃磷脂酰胆碱(DMPC)双层中的alamethicin的分子动力学模拟表明,α-螺旋N-和3(10)-螺旋C-末端的螺旋轴分别相对于双层法线倾斜12度和32度。与固态NMR结果非常吻合。 (C)2015 Elsevier B.V.保留所有权利。

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