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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Farnesol-DMPC phase behaviour: a ~2H-NMR study
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Farnesol-DMPC phase behaviour: a ~2H-NMR study

机译:Farnesol-DMPC相行为:〜2H-NMR研究

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摘要

Involved in a number of diverse metabolic and functional contexts, farnesol is a central component of the mevalonate pathway, post-translationally attaches to proteins, and affects a number of other membrane-associated events. Despite farnesol's biological implications, a detailed analysis of how farnesol affects the physical properties and phase behaviour of lipid membranes is lacking. As ~2H-NMR spectra are sensitive to molecular motions and acyl chain orientation, they can be used to measure the degree of molecular order present in the system. Also, since the ~2H-NMR spectra of fluid and gel phase lipids are very different, they are sensitive probes of membrane phase equilibrium and can be used to determine fluid–gel phase boundaries. In this study, dimyristoyl phosphatidylcholine-d_(54) (DMPC-d_(54)) bilayers containing varying concentrations of trans–trans farnesol (2.5–20.0 mol%) are investigated over a range of temperatures (8–30 ℃). Analysis of these spectra has led to the construction of a farnesol-DMPC-d_(54) temperature–composition plot. We show that increasing concentrations of farnesol induce a decrease in the fluid–gel phase transition temperature and promote fluid–gel coexistence. Interestingly, farnesol does not seem to affect the quadrupolar splittings (△v_Q) in the fluid phase, i.e., the organization of farnesol within the bilayer and its interaction with phospholipids does not appreciably influence acyl chain order in the fluid phase.
机译:法尼醇涉及许多不同的代谢和功能环境,是甲羟戊酸途径的重要组成部分,在翻译后附着在蛋白质上,并影响许多其他与膜相关的事件。尽管法尼醇具有生物学意义,但仍缺乏对法尼醇如何影响脂质膜的物理性质和相行为的详细分析。由于〜2H-NMR光谱对分子运动和酰基链取向敏感,因此它们可用于测量系统中存在的分子有序度。另外,由于流体和凝胶相脂质的〜2H-NMR光谱差异很大,因此它们是膜相平衡的灵敏探针,可用于确定流体-凝胶相边界。在这项研究中,研究了在一定温度范围(8–30℃)下含有不同浓度的反式-反式法尼醇(2.5–20.0 mol%)的双炔丙基磷脂酰胆碱-d_(54)(DMPC-d_(54))双层。对这些光谱的分析导致了法尼醇-DMPC-d_(54)温度-成分图的构建。我们表明,法尼醇浓度的增加会导致液-凝胶相变温度降低,并促进液-凝胶共存。有趣的是,法尼醇似乎不影响液相中的四极分裂(△v_Q),即,法尼醇在双层中的组织及其与磷脂的相互作用不会显着影响液相中的酰基链顺序。

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