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首页> 外文期刊>ACS Omega >Depth Distribution of Spin-Labeled Liponitroxides within Lipid Bilayers: A Combined EPR and Molecular Dynamics Approach
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Depth Distribution of Spin-Labeled Liponitroxides within Lipid Bilayers: A Combined EPR and Molecular Dynamics Approach

机译:脂质双层内自旋标记的环氧丙烷的深度分布:结合的EPR和分子动力学方法

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The distribution in an egg–phosphatidylcholine bilayer of a series of spin-labeled nitroxides, potentially useful as targeted antioxidants, has been investigated using molecular dynamics (MD) simulations. The in silico method has been tested at first for a series of n-doxyl-phosphocholine-doped bilayers, with the doxyl moiety located at different positions (n) of the lipid chain, in analogy to electron paramagnetic resonance (EPR) spin labeling and other MD studies. As a result, a novel calibration curve has been obtained, suitable to determine the absolute membrane penetration depth of any paramagnetic solute from EPR measurements. A second series of MD simulations was then carried out on the newly synthesized series of liponitroxides (NOXs) recently tested as antioxidants against the lipid peroxidation of polyunsaturated fatty acids in membranes: their penetration depths, as determined by EPR in phosphatidylcholine liposomes, were correlated with their antioxidant efficacy. In these NOXs, a glycerol moiety is esterified with a carboxy derivative of a pyrroline nitroxide and one or two oleic acid residues. A very good agreement between the EPR experimental results and those from the current MD simulations indicates that the short distance of the nitroxide moiety from the fatty acid double bonds has been now definitively assessed; moreover, it indicates that our MD methodology could be successfully employed in the absence of nonparamagnetic species.
机译:使用分子动力学(MD)模拟研究了一系列自旋标记的一氧化氮在蛋-磷脂酰胆碱双层中的分布,这些氧化氮有可能用作靶向抗氧化剂。首先,对in-silico方法进行了一系列n-doxyl-磷酸胆碱掺杂双层的测试,其二甲苯基部分位于脂质链的不同位置(n),类似于电子顺磁共振(EPR)自旋标记和其他医学研究。结果,获得了一条新颖的校准曲线,适用于根据EPR测量确定任何顺磁性溶质的绝对膜穿透深度。然后,对新合成的一系列脂质硝基氧化物(NOXs)进行了第二系列的MD模拟,该系列脂质体最近被测试为抗多不饱和脂肪酸在膜中脂质过氧化的抗氧化剂:通过EPR在磷脂酰胆碱脂质体中的渗透深度与它们的抗氧化功效。在这些NOX中,甘油部分被吡咯啉氮氧化物的羧基衍生物和一个或两个油酸残基酯化。 EPR实验结果与当前MD模拟结果之间的很好的一致性表明,现在已经确定地评估了氮氧化物部分与脂肪酸双键的短距离;此外,这表明我们的MD方法可以在不存在非顺磁性物质的情况下成功采用。

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