Henriksen Jonas, Rowat Amy C, Ipsen John H
MEMPHYS Centre for Biomembrane Physics, Department of Chemistry, Technical University of Denmark, 2800, Lyngby, Denmark.
Eur Biophys J. 2004 Dec;33(8):732-41. doi: 10.1007/s00249-004-0420-5. Epub 2004 Jun 25.
Sterols are regulators of both biological function and structure. The role of cholesterol in promoting the structural and mechanical stability of membranes is widely recognized. Knowledge of how the related sterols, lanosterol and ergosterol, affect membrane mechanical properties is sparse. This paper presents a comprehensive comparison of the effects of cholesterol, lanosterol, and ergosterol upon the bending elastic properties of 1-palmitoyl-2-oleoyl- sn-glycero-3-phosphocholine giant unilamellar vesicles. Measurements are made using vesicle fluctuation analysis, a nonintrusive technique that we have recently improved for determining membrane bending rigidity. Giving a detailed account of the vesicle fluctuation analysis technique, we describe how the gravitational stabilization of the vesicles enhances image contrast, vesicle yield, and the quality of data. Implications of gravity on vesicle behaviour are also discussed. These recent modifications render vesicle fluctuation analysis an efficient and accurate method for determining how cholesterol, lanosterol, and ergosterol increase membrane bending rigidity.
甾醇是生物功能和结构的调节剂。胆固醇在促进膜的结构和机械稳定性方面的作用已得到广泛认可。关于相关甾醇羊毛甾醇和麦角甾醇如何影响膜的机械性能的了解却很少。本文全面比较了胆固醇、羊毛甾醇和麦角甾醇对1-棕榈酰-2-油酰-sn-甘油-3-磷酸胆碱巨型单层囊泡弯曲弹性性质的影响。测量使用囊泡波动分析进行,这是一种非侵入性技术,我们最近对其进行了改进以确定膜的弯曲刚度。在详细介绍囊泡波动分析技术时,我们描述了囊泡的重力稳定如何增强图像对比度、囊泡产量和数据质量。还讨论了重力对囊泡行为的影响。这些最新的改进使囊泡波动分析成为一种有效且准确的方法,用于确定胆固醇、羊毛甾醇和麦角甾醇如何增加膜的弯曲刚度。