Curdová Jana, Capková Pavla, Plásek Jaromír, Repáková Jarmila, Vattulainen Ilpo
Department of Chemical Physics and Optics, Faculty of Mathematics and Physics, Charles University, Ke Karlovu 3, Prague 2, CZ-12116, Czech Republic.
J Phys Chem B. 2007 Apr 12;111(14):3640-50. doi: 10.1021/jp065956w. Epub 2007 Mar 20.
We consider the properties of free pyrene probes inside gel- and fluidlike phospholipid membranes and unravel their influence on membrane properties. For this purpose, we employ atomic-scale molecular dynamics simulations at several temperatures for varying pyrene concentrations. Molecular dynamics simulations show that free pyrene molecules prefer to be located in the hydrophobic acyl chain region close to the glycerol group of lipid molecules. Their orientation is shown to depend on the phase of the membrane. In the fluid phase, pyrenes favor orientations where they are standing upright in parallel to the membrane normal, while, in the gel phase, the orientation is affected by the tilt of lipid acyl chains. Pyrenes are found to locally perturb membrane structure, while the nature of perturbations in the gel and fluid phases is completely different. In the gel phase, pyrenes break the local packing of lipids and decrease the ordering of lipid acyl chains around them, while, in the fluid phase, pyrenes increase the ordering of nearby acyl chains, thus having an opposite effect. Interestingly, this proposes a similarity to effects induced by cholesterol on structural membrane properties above and below the gel-fluid transition temperature. Further studies express a view that the orientational ordering of pyrene is not a particularly good measure of the acyl chain ordering of lipids. While pyrene ordering provides the correct qualitative behavior of acyl chain ordering in the fluid phase, its capability to predict the correct temperature dependence is limited.
我们研究了游离芘探针在凝胶状和流体状磷脂膜中的性质,并揭示了它们对膜性质的影响。为此,我们在几个温度下针对不同的芘浓度进行了原子尺度的分子动力学模拟。分子动力学模拟表明,游离芘分子倾向于位于靠近脂质分子甘油基团的疏水酰基链区域。它们的取向取决于膜的相态。在流体相中,芘倾向于与膜法线平行直立的取向,而在凝胶相中,取向受脂质酰基链倾斜的影响。发现芘会局部扰动膜结构,而凝胶相和流体相中的扰动性质完全不同。在凝胶相中,芘破坏脂质的局部堆积并降低其周围脂质酰基链的有序性,而在流体相中,芘增加附近酰基链的有序性,从而产生相反的效果。有趣的是,这表明与胆固醇在凝胶 - 流体转变温度上下对膜结构性质所诱导的效应具有相似性。进一步的研究表明,芘的取向有序性并不是脂质酰基链有序性的特别好的衡量标准。虽然芘的有序性在流体相中提供了酰基链有序性的正确定性行为,但其预测正确温度依赖性的能力有限。