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膜荧光染料基态和激发态动力学的数值研究。

Numerical studies of the membrane fluorescent dyes dynamics in ground and excited states.

作者信息

Barucha-Kraszewska Justyna, Kraszewski Sebastian, Jurkiewicz Piotr, Ramseyer Christophe, Hof Martin

机构信息

Ustav fyzikální chemie J. Heyrovského AV CR, v. v. i., Dolejskova 2155/3, 18223 Praha 8, Czech Republic.

出版信息

Biochim Biophys Acta. 2010 Sep;1798(9):1724-34. doi: 10.1016/j.bbamem.2010.05.020. Epub 2010 May 25.

Abstract

Fluorescence methods are widely used in studies of biological and model membranes. The dynamics of membrane fluorescent markers in their ground and excited electronic states and correlations with their molecular surrounding within the fully hydrated phospholipid bilayer are still not well understood. In the present work, Quantum Mechanical (QM) calculations and Molecular Dynamics (MD) simulations are used to characterize location and interactions of two membrane polarity probes (Prodan; 6-propionyl-2-dimethylaminonaphthalene and its derivative Laurdan; 2-dimethylamino-6-lauroylnaphthalene) with the dioleoylphosphatidylcholine (DOPC) lipid bilayer model. MD simulations with fluorophores in ground and excited states are found to be a useful tool to analyze the fluorescent dye dynamics and their immediate vicinity. The results of QM calculations and MD simulations are in excellent agreement with available experimental data. The calculation shows that the two amphiphilic dyes initially placed in bulk water diffuse within 10 ns towards their final location in the lipid bilayer. Analysis of solvent relaxation process in the aqueous phase occurs on the picoseconds timescale whereas it takes nanoseconds at the lipid/water interface. Four different relaxation time constants, corresponding to different relaxation processes, where observed when the dyes were embedded into the membrane.

摘要

荧光方法广泛应用于生物膜和模型膜的研究中。膜荧光标记物在基态和激发电子态下的动力学以及它们与完全水合磷脂双层内分子环境的相关性仍未得到很好的理解。在本工作中,使用量子力学(QM)计算和分子动力学(MD)模拟来表征两种膜极性探针(Prodan;6-丙酰基-2-二甲基氨基萘及其衍生物Laurdan;2-二甲基氨基-6-月桂酰萘)与二油酰磷脂酰胆碱(DOPC)脂质双层模型的位置和相互作用。发现对处于基态和激发态的荧光团进行MD模拟是分析荧光染料动力学及其紧邻区域的有用工具。QM计算和MD模拟的结果与现有的实验数据非常吻合。计算表明,最初置于大量水中的两种两亲性染料在10纳秒内扩散至脂质双层中的最终位置。水相中溶剂弛豫过程的分析发生在皮秒时间尺度上,而在脂质/水界面则需要纳秒时间。当染料嵌入膜中时,观察到对应于不同弛豫过程的四个不同弛豫时间常数。

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