Department of Physics and Astronomy, University of Waterloo, Waterloo, Ontario, N2L 3G1, Canada.
Langmuir. 2010 Sep 21;26(18):14737-46. doi: 10.1021/la102052r.
Electrostatic modification of lipid headgroups and its effect on membrane curvature are not only relevant in a variety of contexts such as cell shape transformation and membrane tubulation but also are intriguingly implicated in membrane functions. For instance, the gating (open vs closed) properties of mechanosensitive channels can be influenced by membrane curvature and ion valence. However, a full theoretical description of membrane electrostatics is still lacking; in the past, membrane bending has often been considered under a few assumptions about how bending modifies lipid arrangements and surface charges. Here, we present a unified theoretical approach to spontaneous membrane curvature, C(0), in which lipid properties (e.g., packing shape) and electrostatic effects are self-consistently integrated. For the description of electrostatic interactions, especially between a lipid charge and a divalent counterion, we implement the Poisson-Boltzmann (PB) approach by incorporation of finite ionic sizes, so as to capture both lateral and transverse charge correlations on the membrane surface. Our results show that C(0) is sensitive to the way lipid rearrangements and divalent counterions are modeled. Interestingly, it can change its sign in the presence of divalent counterions, thus stabilizing reverse hexagonal (H(II)) phases. Our results show how electrostatic modification of headgroups influences the preferred structure of lipid aggregates (inverted micelles vs bilayers).
脂质头部的静电修饰及其对膜曲率的影响不仅在细胞形状转化和膜小管化等多种情况下具有重要意义,而且还与膜功能有着有趣的联系。例如,机械敏感性通道的门控(开启与关闭)特性可以受到膜曲率和离子价的影响。然而,目前仍然缺乏对膜静电的全面理论描述;过去,在考虑弯曲如何改变脂质排列和表面电荷时,经常对膜弯曲进行一些假设。在这里,我们提出了一种统一的理论方法来研究自发膜曲率 C(0),其中脂质特性(例如,堆积形状)和静电效应被一致地整合在一起。为了描述静电相互作用,特别是脂质电荷和二价抗衡离子之间的相互作用,我们通过结合有限离子尺寸来实现泊松-玻尔兹曼(PB)方法,以捕捉膜表面上的横向和横向电荷相关性。我们的结果表明,C(0)对脂质重排和二价抗衡离子建模方式的变化非常敏感。有趣的是,在存在二价抗衡离子的情况下,它的符号可能会发生变化,从而稳定反向六方(H(II))相。我们的结果表明,头部的静电修饰如何影响脂质聚集体(反转胶束与双层)的优先结构。