Jørgensen K, Mouritsen O G
Department of Physical Chemistry, Technical University of Denmark, Lyngby, Denmark.
Biophys J. 1995 Sep;69(3):942-54. doi: 10.1016/S0006-3495(95)79968-4.
The non-equilibrium dynamic ordering process of coexisting phases has been studied for two-component lipid bilayers composed of saturated di-acyl phospholipids with different acyl chain lengths, such as DC14PC-DC18PC and DC12PC-DC18PC. By means of a microscopic interaction model and computer-simulation techniques the non-equilibrium properties of these two mixtures have been determined with particular attention paid to the effects of the non-equilibrium ordering process on membrane heterogeneity in terms of local and global lateral membrane organization. The results reveal that a sudden temperature change that takes the lipid mixture from the fluid one-phase region into the gel-fluid phase-coexistence region leads to the formation of a large number of small lipid domains which slowly are growing in time. The growth of the lipid domains, which is limited by long-range diffusion of the lipid molecules within the two-dimensional membrane plane, gives rise to the existence of a highly heterogeneous percolative-like structure with a network of interfacial regions that have properties different from those of the phase-separated gel and fluid bulk phases. The results, which are discussed in relation to recent experimental observations interpreted in terms of a percolative-like membrane structure within the two phase region (Almeida, P.F.F., Vaz, W.L.C., and T.E. Thompson. 1992. Biochemistry 31:7198-7210), suggest that non-equilibrium effects may influence lipid domain formation and membrane organization on various length and time scales. Such effects might be of importance in relation to membrane processes that require molecular mobility of the membrane components in restricted geometrical environments of the compartmentalized lipid membrane.
已对由不同酰基链长度的饱和二酰基磷脂组成的双组分脂质双层(如DC14PC - DC18PC和DC12PC - DC18PC)中共存相的非平衡动态有序过程进行了研究。借助微观相互作用模型和计算机模拟技术,确定了这两种混合物的非平衡性质,并特别关注了非平衡有序过程对膜异质性的影响,这种影响涉及局部和全局横向膜组织。结果表明,将脂质混合物从流体单相区域突然转变到凝胶 - 流体相共存区域的温度变化会导致形成大量小的脂质域,这些脂质域会随时间缓慢生长。脂质域的生长受脂质分子在二维膜平面内的长程扩散限制,导致存在一种高度异质的类似渗流的结构,其界面区域网络具有与相分离的凝胶相和流体本体相不同的性质。这些结果与最近根据两相区域内类似渗流的膜结构进行解释的实验观察结果相关(Almeida, P.F.F., Vaz, W.L.C., and T.E. Thompson. 1992. Biochemistry 31:7198 - 7210),表明非平衡效应可能在各种长度和时间尺度上影响脂质域的形成和膜组织。这种效应对于需要膜成分在分隔的脂质膜受限几何环境中进行分子移动的膜过程可能很重要。