首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Molecular organization in mixed SOPC and SDPC model membranes: Water permeability studies of polyunsaturated lipid bilayers
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Molecular organization in mixed SOPC and SDPC model membranes: Water permeability studies of polyunsaturated lipid bilayers

机译:混合SOPC和SDPC模型膜中的分子组织:多不饱和脂双层的水渗透性研究

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摘要

Polyunsaturated phospholipids in plasma membranes modulate order and dynamics of the lipid bilayer and influence integral membrane protein function. In this study, we investigate the effects of polyunsaturated fatty acid (PUFA) chains in phosphatidylcholine (PC) on osmotic water permeability and packing characteristics, using a droplet interface bilayer (DIB) as a model cell membrane. The lipid bilayer system is composed of mixtures of PC lipids with varying ratio of 1-stearoyl-2-oleoylphosphatidylcholine (SOPC, 18: 0-18:1 PC) to 1-stearoyl-2-docosahexaenoylphosphatidylcholine (SDPC, 18:0-22:6 PC). Water permeability coefficients (P-f) were derived from the kinetics of osmotic filtration across the DIB. Confocal Raman microspectroscopy probed the structural and packing properties of the mixtures. The water transport parameters and Raman spectral analyses together indicate that P-f and aggregate ordering of a lipid bilayer are significantly influenced by the progressive addition of PUFA chains to a bilayer. The permeability rates across bilayers of the mixtures are a linear function of SDPC mol%. The mean disorder for the bilayer hydrocarbon region, as determined by Raman disorder parameter from the saturated chain, scales linearly with P-f. The linear trend for P-f versus degree of unsaturation in double-chain PC lipid bilayers is about half the value of that obtained for a single-chain lipid system, with implications for an evolutionary preference for phospholipids during the postulated biotic transition from single-chain lipid protocellular to modern cell membranes. The amassed results highlight the role of PUFA in modifying membrane order as manifest in bulk membrane physical properties, with characteristic differences depending on single-chain or double-chain systems.
机译:血浆膜中的多不饱和磷脂调节脂质双层的顺序和动力学,影响整体膜蛋白功能。在这项研究中,我们研究了使用液滴接口双层(DIB)作为模型细胞膜对磷脂酰胆碱(PC)在磷脂酰胆碱(PC)中的影响。脂质双层系统由PC脂质的混合物组成,其具有1-硬脂酰-2-油酸氯磷苷(SOPC,18:0-18:1 pC)至1-硬脂酰-2-二十烷氧酰磷酰磷苷(SDPC,18:0-22 :6台PC)。水渗透系数(P-F)衍生自DIB上渗透过滤的动力学。共焦拉曼微痉挛探测混合物的结构和包装性能。水传输参数和拉曼光谱分析表明,脂质双层的P-F和骨料排序受到PUFA链对双层的逐步添加的显着影响。混合物双层的渗透率率是SDPC摩尔%的线性函数。通过从饱和链中拉曼紊乱参数测定的双层烃区的平均紊乱,用P-F线性缩放。双链PC脂质双层的PF与不饱和度的线性趋势大约为单链脂质系统获得的一半,这对于从单链脂质的假设生物转变期间对磷脂的进化偏好有影响原生殖细胞到现代细胞膜。大使结果突出了PUFA在散装膜物理性质中显现的改变膜序的作用,具体差异取决于单链或双链系统。

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