Cheng W, Wang C X, Chen W Z, Xu Y W, Shi Y Y
Department of Biology, University of Science and Technology of China, Hefei, Anhui, P. R. China.
Eur Biophys J. 1998;27(2):105-12. doi: 10.1007/s002490050116.
In this paper, the finite difference Poisson-Boltzmann (FDPB) method with four dielectric constants is developed to study the effect of dielectric saturation on the electrostatic barriers of the permeation ion. In this method, the inner shape of the channel pore is explicitly represented, and the fact that the dielectric constant inside the channel pore is different from that of bulk water is taken into account. A model channel system which is a righthanded twist bundle with four alpha-helical segments is provided for this study. From the FDPB calculations, it is found that the difference of the ionic electrostatic solvation energy for wider domains depends strongly on the pore radius in the vicinity of the ion when the pore dielectric constant is changed from 78 to 5. However, the electrostatic solvation energy of the permeation ion can not be significantly affected by the dielectric constant in regions with small pore radii. Our results indicate that the local electrostatic interactions inside the ion channel are of major importance for ion electrostatic solvation energies, and the effect of dielectric saturation on the electrostatic barriers is coupled to the interior channel dimensions.
在本文中,开发了具有四个介电常数的有限差分泊松 - 玻尔兹曼(FDPB)方法,以研究介电饱和对渗透离子静电势垒的影响。在该方法中,明确表示了通道孔隙的内部形状,并考虑了通道孔隙内的介电常数与体相水不同这一事实。本研究提供了一个模型通道系统,它是一个具有四个α - 螺旋段的右手扭曲束。从FDPB计算中发现,当孔隙介电常数从78变为5时,较宽区域的离子静电溶剂化能差异强烈依赖于离子附近的孔隙半径。然而,在小孔径区域,渗透离子的静电溶剂化能不会受到介电常数的显著影响。我们的结果表明,离子通道内部的局部静电相互作用对离子静电溶剂化能至关重要,并且介电饱和对静电势垒的影响与通道内部尺寸相关。