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2H-NMR Study and Molecular Dynamics Simulation of the Location Alignment and Mobility of Pyrene in POPC Bilayers

机译:H在POPC双层中的位置排列和移动性的2 H-NMR研究和分子动力学模拟

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摘要

The alignment of pyrene in a 1-palmitoyl-2-oleoyl-phosphatidylcholine bilayer was investigated using two different approaches, namely solid-state 2H-NMR spectroscopy and molecular dynamics (MD) simulations. Quadrupolar splittings from 2H-NMR spectra of deuterated pyrene-d10 in an oriented lipid bilayer give information about the orientation of C-D bonds with respect to the membrane normal. From MD simulations, geometric information is accessible via trajectories. By defining molecular and bond order parameters, the data from MD trajectories and NMR spectra can be compared straightforwardly. To ensure that the results from both methods are comparable, parameters of the experimental and the simulation setup were chosen to be as similar as possible. From simulations, we saw that pyrene prefers a position inside the lipid membrane near the headgroups and has no tendency to diffuse from one monolayer of the membrane to the other. The results from simulation and NMR show that the normal of the molecular plane is aligned nearly perpendicular to the bilayer normal. The long axis of pyrene lies preferentially parallel to the bilayer normal within a range of ±30°. The results from the two different methods are remarkably consistent. The good agreement can be explained by the fact that the different kind of motions of a pyrene molecule are already averaged within a few nanoseconds, which is the timescale covered by the MD simulation.
机译:采用两种不同的方法,即固态 2 H-NMR光谱法和分子动力学(MD)模拟,研究了pal在1-棕榈酰基-2-油酰基-磷脂酰胆碱双层中的排列。从氘化pyr双层中的氘化<-d10的 2 H-NMR谱进行的四极分裂给出了有关C-D键相对于膜法线方向的信息。通过MD仿真,可以通过轨迹访问几何信息。通过定义分子和键序参数,可以直接比较MD轨迹和NMR光谱的数据。为确保两种方法的结果均具有可比性,请选择实验和仿真设置的参数,使其尽可能相似。通过模拟,我们发现pyr更喜欢脂质膜内部靠近头基的位置,并且没有从膜的单层扩散到另一层的趋势。模拟和NMR的结果表明,分子平面的法线几乎垂直于双层法线排列。 of的长轴优选在±30°的范围内平行于双层法线。两种不同方法的结果非常一致。可以通过以下事实来解释良好的一致性:molecule分子的不同类型的运动已经在几纳秒内求平均,这是MD模拟所涵盖的时间范围。

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