Structural Change in Dimyristoyl Phosphatidyl Choline (DMPC) Molecule Alkyl Chains on the Addition of Cholesterol to DMPC Monolayer: Specific Addition Effect of Cholesterol

D. Ito, Takanari Ikeda, K. Taga, Yasushi Yamamoto, Z. Shervani, Masato Yamamoto
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引用次数: 1

Abstract

We have investigated the morphology of dimyristoyl phosphatidyl choline (DMPC)—cholesterol mixed monolayer formed on the water surface by dropping method using surface tension measurement (STm), Brewster angle microscopy (BAM), and infrared external reflection spectroscopy (IERS). STm results showed negative deviation of the limiting molecular area (A0) of cholesterol occurred when cholesterol was added to the DMPC monolayer. BAM images showed the expandable DMPC monolayer changed to the condensed rigid monolayer at more than cholesterol mole fraction (xChol) 0.4. IERS recordings showed that the addition of cholesterol at xChol = 0.4 occurred structural change from gauche- to trans- conformation of two DMPC molecule alkyl chains. From these results, it is found that cholesterol molecule has specific properties that cause structural transition of DMPC molecule alkyl chains.
二肉豆醇酰磷脂酰胆碱(DMPC)分子烷基链对胆固醇向DMPC单层加成的结构变化:胆固醇的特异性加成效应
采用表面张力测量(STm)、布鲁斯特角显微镜(BAM)和红外外反射光谱(IERS)等方法,研究了水滴法在水面形成的二myristoyl磷脂酰胆碱(DMPC) -胆固醇混合单层的形态。STm结果显示,当胆固醇加入DMPC单层时,胆固醇的极限分子面积(A0)出现负偏差。BAM图像显示,当胆固醇摩尔分数(xChol)大于0.4时,可膨胀的DMPC单层变为凝聚的刚性单层。在xChol = 0.4时加入胆固醇,使DMPC分子的两个烷基链的结构由间扭构象变为反式构象。从这些结果发现,胆固醇分子具有引起DMPC分子烷基链结构转变的特殊性质。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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