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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Control and role of pH in peptide-lipid interactions in oriented membrane samples
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Control and role of pH in peptide-lipid interactions in oriented membrane samples

机译:pH在定向膜样品中肽-脂相互作用中的控制作用

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摘要

To understand the molecular mechanisms of amphiphilic membrane-active peptides, one needs to study their interactions with lipid bilayers under ambient conditions. However, it is difficult to control the pH of the sample in biophysical experiments that make use of mechanically aligned multilamellar membrane stacks on solid supports. HPLC-purified peptides tend to be acidic and can change the pH in the sample significantly. Here, we have systematically studied the influence of pH on the lipid interactions of the antimicrobial peptide PGLa embedded in oriented DMPC/DMPG bilayers. Using solid-state NMR (P-31, H-2, F-19), both the lipid and peptide components were characterized independently, though in the same oriented samples under typical conditions of maximum hydration. The observed changes in lipid polymorphism were supported by DSC on multilamellar liposome suspensions. On this basis, we can present an optimized sample preparation protocol and discuss the challenges of performing solid-state NMR experiments under controlled pH. DMPC/DMPG bilayers show a significant up-field shift and broadening of the main lipid phase transition temperature when lowering the pH from 10.0 to 2.6. Both, strongly acidic and basic pH, cause a significant degree of lipid hydrolysis, which is exacerbated by the presence of PGLa. The characteristic re-alignment of PGLa from a surface-bound to a tilted state is not affected between pH of 7 to 4 in fluid bilayers. On the other hand, in gel-phase bilayers the peptide remains isotropically mobile under acidic conditions, displays various co-existing orientational states at pH 7, and adopts an unknown structural state at basic pH. (C) 2014 Elsevier B.V. All rights reserved.
机译:为了了解两亲性膜活性肽的分子机制,需要研究它们在环境条件下与脂质双层的相互作用。但是,在生物物理实验中难以控制样品的pH值,而生物物理实验是利用在固体支持物上机械对齐的多层膜堆栈进行的。 HPLC纯化的肽通常是酸性的,可以显着改变样品的pH。在这里,我们系统地研究了pH对嵌入定向DMPC / DMPG双层中的抗菌肽PGLa的脂质相互作用的影响。使用固态NMR(P-31,H-2,F-19),脂类和肽成分均得到了独立表征,尽管在最大水化的典型条件下的相同取向样品中也是如此。 DSC支持在多层脂质体悬液上观察到的脂质多态性变化。在此基础上,我们可以提出一种优化的样品制备方案,并讨论在受控pH下进行固态NMR实验的挑战。当pH值从10.0降低到2.6时,DMPC / DMPG双层膜显示出明显的上场偏移和主要脂质相变温度的变宽。强酸性和碱性pH均引起很大程度的脂质水解,而PGLa的存在会加剧该水解。在流体双层中,在7至4的pH值之间,PGLa从表面结合到倾斜状态的特征性重新排列不受影响。另一方面,在凝胶相双层中,该肽在酸性条件下保持各向同性运动,在pH 7时显示各种共存的取向状态,在碱性pH时采用未知的结构状态。 (C)2014 Elsevier B.V.保留所有权利。

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