Ryrie I J
Eur J Biochem. 1983 Dec 1;137(1-2):205-13. doi: 10.1111/j.1432-1033.1983.tb07816.x.
Cation-induced membrane appression and lateral segregation of chlorophyll-protein complexes have been investigated by freeze-fracture analysis of model membranes containing photosystem 1 and the light-harvesting complex of photosystem 2. In light-harvesting complex proteoliposomes, cations caused extensive membrane adhesion and a segregation of protein into appressed regions. A marked flattening of the appressed membranes, sometimes together with a co-alignment of the particles on the opposing membrane faces, strongly suggests a direct transmembrane attraction between the protein particles. Photosystem 1 membranes were not appressed by cations but some clustering of the particles occurred, together with their exclusion from some regions of the lipid. By incorporating dipalmitoylglycerophosphocholine into the membranes, it is shown that a similar exclusion of the particles can occur due to liquid-crystalline to gel state transitions of the lipids. Proteoliposomes containing both the light-harvesting complex and photosystem 1 displayed cation-induced membrane appression, but only between regions containing the light-harvesting complex. Photosystem 1 was largely confined to unappressed membranes. Destacking occurred at low salt concentrations irrespective of whether photosystem 1 was present, showing that in proteoliposomes, and probably in thylakoids, this process does not require the presence of highly charged complexes from unappressed regions.
通过对含有光系统1和光系统2捕光复合体的模型膜进行冷冻断裂分析,研究了阳离子诱导的膜压叠以及叶绿素-蛋白复合体的侧向分离。在捕光复合体蛋白脂质体中,阳离子导致广泛的膜粘连以及蛋白质向压叠区域的分离。压叠膜明显变平,有时相对膜面上的颗粒也会共排列,这强烈表明蛋白质颗粒之间存在直接的跨膜吸引力。阳离子不会使光系统1膜发生压叠,但颗粒会出现一些聚集,同时它们会被排除在脂质的某些区域之外。通过将二棕榈酰甘油磷酸胆碱掺入膜中,表明由于脂质从液晶态向凝胶态转变,颗粒也会发生类似的排除现象。同时含有捕光复合体和光系统1的蛋白脂质体表现出阳离子诱导的膜压叠,但仅在含有捕光复合体的区域之间。光系统1主要局限于未压叠的膜中。无论是否存在光系统1,低盐浓度下都会发生垛叠解体,这表明在蛋白脂质体中,可能在类囊体中,该过程不需要未压叠区域中高电荷复合体的存在。