DTU-Nanotech, The Technical University of Denmark, Roskilde, Denmark.
Biophys J. 2010 May 19;98(10):2199-205. doi: 10.1016/j.bpj.2010.01.037.
Lysolipids and fatty acids are the natural products formed by the hydrolysis of phospholipids. Lysolipids and fatty acids form micelles in solution and acts as detergents in the presence of lipid membranes. In this study, we investigate the detergent strength of a homologous series of lyso-phosphatidylcholine lipids (LPCs) on 1-palmitoyl-2-oleyl-sn-glycerol-3-phosphatidylcholine (POPC) lipid membranes by use of isothermal titration calorimetry and vesicle fluctuation analysis. The membrane partition coefficient (K) and critical micelle concentration (cmc) are determined by isothermal titration calorimetry and found to obey an inverse proportionality relation (cmc.K approximately 0.05-0.3). The partition coefficient and critical micelle concentration are used for the analysis of the effect of LPCs on the membrane bending rigidity. The dependency of the bending rigidity on LPC membrane coverage has been analyzed in terms of a phenomenological model based on continuum elastic theory, which yields information about the curvature-inducing properties of the LPC molecule. The results reveal: 1), an increase in the partition coefficient with increasing LPC acyl-chain length; and 2), that the degree of acyl-chain mismatch between LPC and POPC determines the magnitude of the membrane mechanical perturbation per LPC molecule in the membrane. Finally, the three-stage model describing detergent membrane interaction has been extended by a parameter D(MCI), which governs the membrane curvature stability in the detergent concentration range below the cmc-value of the LPC molecule.
溶血磷脂和脂肪酸是磷脂水解形成的天然产物。溶血磷脂和脂肪酸在溶液中形成胶束,并在脂质膜存在下充当去污剂。在这项研究中,我们通过等温滴定微量热法和囊泡波动分析研究了一系列同源溶血磷脂酰胆碱脂质 (LPC) 对 1-棕榈酰-2-油酰-sn-甘油-3-磷酸胆碱 (POPC) 脂质膜的去污强度。通过等温滴定微量热法测定了膜分配系数 (K) 和临界胶束浓度 (cmc),发现它们遵循反比关系 (cmc.K 约为 0.05-0.3)。分配系数和临界胶束浓度用于分析 LPC 对膜弯曲刚性的影响。根据基于连续弹性理论的唯象模型分析了弯曲刚性随 LPC 膜覆盖率的依赖性,该模型提供了有关 LPC 分子诱导曲率性质的信息。结果表明:1)随着 LPC 酰基链长度的增加,分配系数增加;2)LPC 和 POPC 之间的酰基链不匹配程度决定了每个 LPC 分子在膜中引起的膜力学扰动的大小。最后,通过参数 D(MCI)扩展了描述去污剂膜相互作用的三阶段模型,该参数控制了低于 LPC 分子 cmc 值的去污剂浓度范围内的膜曲率稳定性。