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采用差示扫描量热法和分子动力学比较二苯乙烯类似物在脂质双层中的热效应:热效应与拓扑位置和抗氧化活性的相关性。

Comparison of thermal effects of stilbenoid analogs in lipid bilayers using differential scanning calorimetry and molecular dynamics: correlation of thermal effects and topographical position with antioxidant activity.

机构信息

Chemistry Department, University of Athens, Zographou, Greece.

出版信息

Eur Biophys J. 2011 Jul;40(7):865-75. doi: 10.1007/s00249-011-0705-4. Epub 2011 May 8.

Abstract

In previous studies it was shown that cannabinoids (CBs) bearing a phenolic hydroxyl group modify the thermal properties of lipid bilayers more significantly than methylated congeners. These distinct differential properties were attributed to the fact that phenolic hydroxyl groups constitute an anchoring group in the vicinity of the head-group, while the methylated analogs are embedded deeper towards the hydrophobic region of the lipid bilayers. In this work the thermal effects of synthetic polyphenolic stilbenoid analogs and their methylated congeners have been studied using differential scanning calorimetry (DSC). Molecular dynamics (MD) simulations have been performed to explain the DSC results. Thus, two of their phenolic hydroxyl groups orient in the lipid bilayers in such a way that they anchor in the region of the head-group. In contrast, their methoxy congeners cannot anchor effectively and are embedded deeper in the hydrophobic segment of the lipid bilayers. The MD results explain the fact that hydroxystilbenoid analogs exert more significant effects on the pretransition than their methoxy congeners, especially at low concentrations. To maximize the polar interactions, the two phenolic hydroxyl groups are localized in the vicinity of the head-group region, directing the remaining hydroxy group in the hydrophobic region. This topographical position of stilbenoid analogs forms a mismatch that explains the significant broadening of the width of the phase transition and lowering of the main phase-transition temperature in the lipid bilayers. At high concentrations, hydroxy and nonhydroxy analogs appear to form different domains. The correlation of thermal effects with antioxidant activity is discussed.

摘要

在之前的研究中表明,带有酚羟基的大麻素(CBs)比甲基化同系物更显著地改变脂质双层的热性质。这些明显的差异性质归因于酚羟基在头基团附近构成一个锚定基团,而甲基化类似物则更深地嵌入脂质双层的疏水区。在这项工作中,使用差示扫描量热法(DSC)研究了合成多酚类芪类类似物及其甲基化同系物的热效应。进行了分子动力学(MD)模拟来解释 DSC 结果。因此,它们的两个酚羟基在脂质双层中定向,从而在头基团区域锚定。相比之下,它们的甲氧基同系物不能有效地锚定,并且嵌入脂质双层的疏水区更深。MD 结果解释了这样一个事实,即羟基芪类类似物比其甲氧基同系物在预相变中发挥更显著的作用,尤其是在低浓度下。为了最大化极性相互作用,两个酚羟基被定位在头基团区域附近,将其余的羟基引导到疏水区。芪类类似物的这种拓扑位置形成了不匹配,解释了相变宽度的显著拓宽和脂质双层中主相变温度的降低。在高浓度下,羟基和非羟基类似物似乎形成不同的区域。还讨论了热效应与抗氧化活性的相关性。

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