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应用扩散排序核磁共振(DOSY NMR)和分子动力学模拟来探索含非天然氨基酸抗菌肽的胶束结合机制。

The application of DOSY NMR and molecular dynamics simulations to explore the mechanism(s) of micelle binding of antimicrobial peptides containing unnatural amino acids.

作者信息

Clark Tiffany D, Bartolotti Libero, Hicks Rickey P

机构信息

Department of Chemistry, East Carolina University, Science and Technology Building, Greenville, NC 27858, USA.

出版信息

Biopolymers. 2013 Aug;99(8):548-61. doi: 10.1002/bip.22215.

Abstract

Anionic and zwitterionic micelles are often used as simple models for the lipids found in bacterial and mammalian cell membranes to investigate antimicrobial peptide-lipid interactions. In our laboratory we have employed a variety of 1D, 2D, and diffusion ordered (DOSY) NMR experiments to investigate the interactions of antimicrobial peptides containing unnatural amino acids with SDS and DPC micelles. Complete assignment of the proton spectra of these peptides is prohibited by the incorporation of a high percentage of unnatural amino acids which don't contain amide protons into the backbone. However preliminary assignment of the TOCSY spectra of compound 23 in the presence of both micelles indicated multiple conformers are present as a result of binding to these micelles. Chemical Shift Indexing agreed with previously collected CD spectra that indicated on binding to SDS micelles compound 23 adopts a mixture of α-helical structures and on binding to DPC micelles this peptide adopts a mixture of helical and β-turn/sheet like structures. DOSY NMR experiments also indicated that the total positive charge and the relative placement of that charge at the N-terminus or C-terminus are important in determining the mole fraction of the peptide that will bind to the different micelles. DOSY and (1) H-NMR experiments indicated that the length of Spacer #1 plays a major role in defining the binding conformation of these analogs with SDS micelles. Results obtained from molecular simulations studies of the binding of compounds 23 and 36 with SDS micelles were consistent with the observed NMR results.

摘要

阴离子和两性离子胶束常被用作细菌和哺乳动物细胞膜中脂质的简单模型,以研究抗菌肽与脂质的相互作用。在我们的实验室中,我们采用了多种一维、二维和扩散排序(DOSY)核磁共振实验,来研究含非天然氨基酸的抗菌肽与十二烷基硫酸钠(SDS)和二棕榈酰磷脂酰胆碱(DPC)胶束的相互作用。由于在肽主链中引入了高比例不含酰胺质子的非天然氨基酸,这些肽的质子谱无法完全归属。然而,在两种胶束存在下,化合物23的全相关谱(TOCSY)的初步归属表明,与这些胶束结合会产生多种构象异构体。化学位移索引与先前收集的圆二色谱(CD)一致,表明化合物23与SDS胶束结合时采用α-螺旋结构的混合物,与DPC胶束结合时该肽采用螺旋和β-转角/片层状结构的混合物。DOSY核磁共振实验还表明,总正电荷及其在N端或C端的相对位置对于确定与不同胶束结合的肽的摩尔分数很重要。DOSY和氢核磁共振实验表明,间隔基#1的长度在定义这些类似物与SDS胶束的结合构象中起主要作用。化合物23和36与SDS胶束结合的分子模拟研究结果与观察到的核磁共振结果一致。

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