Biochemistry Department, King's College London, 150 Stamford Street, London SE1 9NH, UK.
Prog Lipid Res. 2012 Jul;51(3):179-98. doi: 10.1016/j.plipres.2012.01.001. Epub 2012 Feb 10.
There is considerable interest in lateral domain structure in biological membranes not least because a variety of physiological processes are believed to require assembly and mutual organization of particular membrane components for their execution. Domain structure is known to be created by differences in physicochemical properties between membrane lipids such as phase transition temperature, intermolecular hydrogen bonding and ionic functional groups. Domains are also created by specific interactions between different membrane lipids to form stoichiometric complexes. Such complexes often form ordered structures referred to as membrane rafts. The present challenge is to define the balance of line tension between lateral membrane domains in individual leaflets of the bilayer and coupling forces operating at the midplane of the bilayer responsible for maintaining lipids in opposing domains on either side of the structure in register. A review of the current evidence relating to these questions is presented.
人们对生物膜的侧向域结构非常感兴趣,这主要是因为人们认为各种生理过程都需要特定膜成分的组装和相互组织才能执行。域结构是通过膜脂之间的物理化学性质差异产生的,例如相变温度、分子间氢键和离子官能团。域结构也可以通过不同膜脂之间的特定相互作用形成化学计量复合物来产生。这种复合物通常形成有序结构,称为膜筏。目前的挑战是确定双层中各个叶层的侧向膜域之间的线张力平衡,以及作用于双层中间平面的耦合力,这些力负责将脂质保持在结构两侧的对映域中。本文对与这些问题相关的现有证据进行了综述。