Kozlovsky Yonathan, Zimmerberg Joshua, Kozlov Michael M
Department of Physiology and Pharmacology, Sackler Faculty of Medicine, Tel Aviv University, 69978 Tel Aviv, Israel.
Biophys J. 2004 Aug;87(2):999-1012. doi: 10.1529/biophysj.104.041467.
We consider the elastic behavior of flat lipid monolayer embedding cylindrical inclusions oriented obliquely with respect to the monolayer plane. An oblique inclusion models a fusion peptide, a part of a specialized protein capable of inducing merger of biological membranes in the course of fundamental cellular processes. Although the crucial importance of the fusion peptides for membrane merger is well established, the molecular mechanism of their action remains unknown. This analysis is aimed at revealing mechanical deformations and stresses of lipid monolayers induced by the fusion peptides, which, potentially, can destabilize the monolayer structure and enhance membrane fusion. We calculate the deformation of a monolayer embedding a single oblique inclusion and subject to a lateral tension. We analyze the membrane-mediated interactions between two inclusions, taking into account bending of the monolayer and tilt of the hydrocarbon chains with respect to the surface normal. In contrast to a straightforward prediction that the oblique inclusions should induce tilt of the lipid chains, our analysis shows that the monolayer accommodates the oblique inclusion solely by bending. We find that the interaction between two inclusions varies nonmonotonically with the interinclusion distance and decays at large separations as square of the distance, similar to the electrostatic interaction between two electric dipoles in two dimensions. This long-range interaction is predicted to dominate the other interactions previously considered in the literature.
我们考虑嵌入圆柱形内含物的扁平脂质单层的弹性行为,这些内含物相对于单层平面倾斜排列。倾斜的内含物模拟融合肽,融合肽是一种特殊蛋白质的一部分,能够在基本细胞过程中诱导生物膜融合。尽管融合肽对膜融合的关键重要性已得到充分证实,但其作用的分子机制仍然未知。该分析旨在揭示由融合肽诱导的脂质单层的机械变形和应力,这可能会破坏单层结构的稳定性并增强膜融合。我们计算嵌入单个倾斜内含物并承受侧向张力的单层的变形。我们分析两个内含物之间的膜介导相互作用,同时考虑单层的弯曲以及烃链相对于表面法线的倾斜。与直接预测倾斜内含物应诱导脂质链倾斜相反,我们的分析表明单层仅通过弯曲来容纳倾斜的内含物。我们发现两个内含物之间的相互作用随内含物间距离非单调变化,并且在大间距时以距离的平方衰减,类似于二维中两个电偶极之间的静电相互作用。预计这种长程相互作用将主导文献中先前考虑的其他相互作用。