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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Conformation and dynamic properties of a saturated hydrocarbon chain confined in a model membrane: a Brownian dynamics simulation
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Conformation and dynamic properties of a saturated hydrocarbon chain confined in a model membrane: a Brownian dynamics simulation

机译:限制在模型膜中的饱和烃链的构象和动力学性质:布朗动力学模拟

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摘要

A Brownian dynamics simulation of a saturated hydrocarbon chain with simple mean-field potentials, namely anchorage, orientation and enclosing, reproducing a biological membrane environment is presented. The simulation was performed for a time equivalent to 1.4 μs thanks to the simplicity of our model. The results are compared with those obtained for a hydrocarbon chain simulated in the absence of the membrane potentials but with confinement. With the appropriate choice of parameters, equilibrium properties, such as deuterium order parameter, chain length, tilt angle and geometry, and dynamic properties, such as dihedral angle transition rate, rotational and translational diffusion, recovered from our simulations, correctly reproduced, are consistent with hydrocarbon-derived molecule experimental results and simulation results obtained from other more complex studies.
机译:提出了具有简单平均场势的饱和烃链的布朗动力学模拟,即固定,定向和封闭,从而再现了生物膜环境。由于我们模型的简单性,仿真进行了相当于1.4μs的时间。将结果与在没有膜电势但受限的情况下模拟烃链获得的结果进行比较。通过适当选择参数,平衡特性(例如氘阶参数,链长,倾斜角和几何形状)以及动态特性(例如二面角过渡速率,旋转和平移扩散)(从我们的模拟中恢复并正确再现)是一致的从烃类分子得到的实验结果和从其他更复杂的研究中获得的模拟结果。

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