首页> 外文期刊>The Journal of Chemical Physics >Comparison of cholesterol and its direct precursors along the biosynthetic pathway: Effects of cholesterol, desmosterol and 7-dehydrocholesterol on saturated and unsaturated lipid bilayers
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Comparison of cholesterol and its direct precursors along the biosynthetic pathway: Effects of cholesterol, desmosterol and 7-dehydrocholesterol on saturated and unsaturated lipid bilayers

机译:沿生物合成途径的胆固醇及其直接前体的比较:胆固醇,去胆固醇和7-脱氢胆固醇对饱和和不饱和脂质双层的影响

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摘要

Despite extensive studies, the remarkable structure-function relationship of cholesterol in cellular membranes has remained rather elusive. This is exemplified by the fact that the membrane properties of cholesterol are distinctly different from those of many other sterols. Here we elucidate this issue through atomic-scale simulations of desmosterol and 7-dehydrocholesterol (7DHC), which are immediate precursors of cholesterol in its two distinct biosynthetic pathways. While desmosterol and 7DHC differ from cholesterol only by one additional double bond, we find that their influence on saturated lipid bilayers is substantially different from cholesterol. The capability to form ordered regions in a saturated (dipalmitoyl-phosphatidylcholine) membrane is given by cholesterol>7DHC>desmosterol, indicating the important role of cholesterol in saturated lipid environments. For comparison, in an unsaturated (dioleoyl-phosphatidylcholine) bilayer, the membrane properties of all sterols were found to be essentially identical. Our studies indicate that the different membrane ordering properties of sterols can be characterized by a single experimentally accessible parameter, the sterol tilt. The smaller the tilt, the more ordered are the lipids around a given sterol. The molecular level mechanisms responsible for tilt modulation are found to be related to changes in local packing around the additional double bonds. (C) 2008 American Institute of Physics. [DOI: 10.1063/1.2996296]
机译:尽管进行了广泛的研究,但细胞膜中胆固醇的显着结构-功能关系仍然相当难以捉摸。胆固醇的膜特性与许多其他固醇的膜特性明显不同这一事实可以证明这一点。在这里,我们通过去氢胆固醇和7-脱氢胆固醇(7DHC)的原子级模拟来阐明这个问题,它们是胆固醇在其两种不同的生物合成途径中的直接前体。尽管去甾醇和7DHC仅通过一个额外的双键与胆固醇有所不同,但我们发现它们对饱和脂质双层的影响与胆固醇有很大不同。胆固醇> 7DHC>去甾醇赋予了在饱和(双棕榈酰基-磷脂酰胆碱)膜中形成有序区域的能力,这表明胆固醇在饱和脂质环境中的重要作用。为了比较,在不饱和的(二油酰基-磷脂酰胆碱)双层中,发现所有固醇的膜性质基本相同。我们的研究表明,固醇的不同膜有序特性可以通过单一的实验可得参数,固醇倾斜度来表征。倾斜度越小,给定固醇周围的脂质越有序。发现负责倾斜调节的分子水平机制与围绕附加双键的局部堆积的变化有关。 (C)2008美国物理研究所。 [DOI:10.1063 / 1.2996296]

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