Harries D, May S, Gelbart W M, Ben-Shaul A
Department of Physical Chemistry and the Fritz Haber Research Center, The Hebrew University of Jerusalem, Jerusalem 91904, Israel.
Biophys J. 1998 Jul;75(1):159-73. doi: 10.1016/S0006-3495(98)77503-4.
We develop a statistical thermodynamic model for the phase evolution of DNA-cationic lipid complexes in aqueous solution, as a function of the ratios of charged to neutral lipid and charged lipid to DNA. The complexes consist of parallel strands of DNA intercalated in the water layers of lamellar stacks of mixed lipid bilayers, as determined by recent synchrotron x-ray measurements. Elastic deformations of the DNA and the lipid bilayers are neglected, but DNA-induced spatial inhomogeneities in the bilayer charge densities are included. The relevant nonlinear Poisson-Boltzmann equation is solved numerically, including self-consistent treatment of the boundary conditions at the polarized membrane surfaces. For a wide range of lipid compositions, the phase evolution is characterized by three regions of lipid to DNA charge ratio, rho: 1) for low rho, the complexes coexist with excess DNA, and the DNA-DNA spacing in the complex, d, is constant; 2) for intermediate rho, including the isoelectric point rho = 1, all of the lipid and DNA in solution is incorporated into the complex, whose inter-DNA distance d increases linearly with rho; and 3) for high rho, the complexes coexist with excess liposomes (whose lipid composition is different from that in the complex), and their spacing d is nearly, but not completely, independent of rho. These results can be understood in terms of a simple charging model that reflects the competition between counterion entropy and inter-DNA (rho < 1) and interbilayer (rho > 1) repulsions. Finally, our approach and conclusions are compared with theoretical work by others, and with relevant experiments.
我们开发了一个统计热力学模型,用于描述DNA-阳离子脂质复合物在水溶液中的相演变,该模型是电荷脂质与中性脂质的比例以及电荷脂质与DNA比例的函数。如最近同步加速器X射线测量所确定的,这些复合物由插入混合脂质双层片层堆叠水层中的平行DNA链组成。我们忽略了DNA和脂质双层的弹性变形,但考虑了DNA诱导的双层电荷密度空间不均匀性。通过数值求解相关的非线性泊松-玻尔兹曼方程,包括对极化膜表面边界条件的自洽处理。对于广泛的脂质组成范围,相演变由脂质与DNA电荷比ρ的三个区域来表征:1)对于低ρ,复合物与过量的DNA共存,复合物中DNA-DNA间距d是恒定的;2)对于中等ρ,包括等电点ρ = 1,溶液中所有的脂质和DNA都被纳入复合物,其DNA间距离d随ρ线性增加;3)对于高ρ,复合物与过量的脂质体(其脂质组成与复合物中的不同)共存,它们的间距d几乎但不完全独立于ρ。这些结果可以用一个简单的电荷模型来理解,该模型反映了抗衡离子熵与DNA间(ρ < 1)和双层间(ρ > 1)排斥力之间的竞争。最后,我们将我们的方法和结论与其他人的理论工作以及相关实验进行了比较。