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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Biophysical changes induced by xenon on phospholipid bilayers
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Biophysical changes induced by xenon on phospholipid bilayers

机译:氙在磷脂双层膜上诱导的生物物理变化

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摘要

Structural and dynamic changes in cell membrane properties induced by xenon, a volatile anesthetic molecule, may affect the function of membrane-mediated proteins, providing a hypothesis for the mechanism of general anesthetic action. Here, we use molecular dynamics simulation and differential scanning calorimetry to examine the biophysical and thermodynamic effects of xenon on model lipid membranes. Our results indicate that xenon atoms preferentially localize in the hydrophobic core of the lipid bilayer, inducing substantial increases in the area per lipid and bilayer thickness. Xenon depresses the membrane gel-liquid crystalline phase transition temperature, increasing membrane fluidity and lipid head group spacing, while inducing net local ordering effects in a small region of the lipid carbon tails and modulating the bilayer lateral pressure profile. Our results are consistent with a role for nonspecific, lipid bilayer-mediated mechanisms in producing xenon's general anesthetic action.
机译:由氙气(一种挥发性麻醉剂分子)诱导的细胞膜特性的结构和动态变化,可能会影响膜介导的蛋白质的功能,从而为全身麻醉作用的机理提供了假设。在这里,我们使用分子动力学模拟和差示扫描量热法研究氙对模型脂质膜的生物物理和热力学影响。我们的结果表明,氙原子优先位于脂质双层的疏水核中,从而导致每个脂质的面积和双层厚度显着增加。氙降低了膜凝胶-液晶的相变温度,增加了膜的流动性和脂质头基团的间隔,同时在脂质碳尾部的小区域中引起了净局部有序效应并调节了双层侧向压力分布。我们的结果与非特异性脂质双层介导的机制在产生氙的全身麻醉作用中的作用一致。

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