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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Effect of membrane tension on the electric field and dipole potential of lipid bilayer membrane.
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Effect of membrane tension on the electric field and dipole potential of lipid bilayer membrane.

机译:膜张力对脂质双层膜的电场和偶极电位的影响。

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摘要

The dipole potential of lipid bilayer membrane controls the difference in permeability of the membrane to oppositely charged ions. We have combined molecular dynamics (MD) simulations and experimental studies to determine changes in electric field and electrostatic potential of 1,2-dioleoyl-sn-glycero-3-phosphocholine (DOPC) lipid bilayer in response to applied membrane tension. MD simulations based on CHARMM36 force field showed that electrostatic potential of DOPC bilayer decreases by ~45mV in the physiologically relevant range of membrane tension values (0 to 15dyn/cm). The electrostatic field exhibits a peak (~0.8x10(9)V/m) near the water/lipid interface which shifts by 0.9A towards the bilayer center at 15dyn/cm. Maximum membrane tension of 15dyn/cm caused 6.4% increase in area per lipid, 4.7% decrease in bilayer thickness and 1.4% increase in the volume of the bilayer. Dipole-potential sensitive fluorescent probes were used to detect membrane tension induced changes in DOPC vesicles exposed to osmotic stress. Experiments confirmed that dipole potential of DOPC bilayer decreases at higher membrane tensions. These results are suggestive of a potentially new mechanosensing mechanism by which mechanically induced structural changes in the lipid bilayer membrane could modulate the function of membrane proteins by altering electrostatic interactions and energetics of protein conformational states.
机译:脂质双层膜的偶极电势控制膜对带相反电荷的离子的渗透性差异。我们结合了分子动力学(MD)模拟和实验研究,以确定响应于施加的膜张力,1,2-油酰基-sn-甘油-3-磷酸胆碱(DOPC)脂质双层的电场和静电势的变化。基于CHARMM36力场的MD模拟表明,在生理相关的膜张力值范围(0至15dyn / cm)中,DOPC双层的静电势降低了约45mV。静电场在水/脂质界面附近表现出一个峰值(〜0.8x10(9)V / m),该峰值向双层中心以15dyn / cm的距离移动0.9A。最大膜张力为15dyn / cm,导致每个脂质的面积增加6.4%,双层厚度减少4.7%,双层体积增加1.4%。偶极电位敏感的荧光探针用于检测膜张力诱导的暴露于渗透压的DOPC囊泡中的变化。实验证实,在较高的膜张力下,DOPC双层的偶极电势会降低。这些结果表明潜在的新的机械传感机制,通过该机制机械地改变脂质双层膜中的结构,可以通过改变静电相互作用和蛋白质构象态的能量来调节膜蛋白的功能。

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