Scotto A W, Zakim D
Department of Medicine, Cornell University Medical College, New York, New York 10021.
J Biol Chem. 1988 Dec 5;263(34):18500-6.
The spontaneous reconstitution of lipid-protein complexes was examined by mixing bacteriorhodopsin or UDP-glucuronosyltransferase with preformed, unilamellar bilayers of pure dimyristoylphosphatidylcholine. Spontaneous insertion of these proteins into vesicles of dimyristoylphosphatidylcholine was facilitated by resonicating the vesicles at 4 degrees C. The property of resonicated vesicles that led to spontaneous reconstitution could be annealed by melting the bilayers, which slowed down reconstitution. The overall process of reconstitution consisted, however, of two steps. There was an initial insertion of proteins into a small portion of vesicles followed by subsequent fusion between protein-free vesicles and vesicles containing lipid-protein complexes. The first step appeared to proceed rapidly in all vesicles in a gel phase, whether or not they were resonicated or whether or not resonicated vesicles were annealed. The rate of the second step was sensitive to these treatments. The membrane proteins also inserted into preformed vesicles in a liquid crystalline phase, but this step was slower than for vesicles in a gel phase. Fusion between protein-free and protein-containing vesicles in a liquid crystalline phase was extremely slow. The data show that the spontaneous insertion of pure membrane proteins into preformed vesicles can be a facile event and that the overall reconstitution of membrane proteins into preformed unilamellar vesicles may be simpler to achieve than has been appreciated.
通过将细菌视紫红质或UDP-葡糖醛酸基转移酶与预先形成的纯二肉豆蔻酰磷脂酰胆碱单层双层膜混合,研究了脂质-蛋白质复合物的自发重组。在4℃下对囊泡进行再超声处理有助于这些蛋白质自发插入二肉豆蔻酰磷脂酰胆碱囊泡中。导致自发重组的再超声处理囊泡的特性可通过使双层膜熔化来退火,这会减缓重组过程。然而,重组的整个过程包括两个步骤。首先是蛋白质最初插入一小部分囊泡中,随后是不含蛋白质的囊泡与含有脂质-蛋白质复合物的囊泡之间的融合。第一步似乎在凝胶相中的所有囊泡中迅速进行,无论它们是否经过再超声处理,也无论再超声处理的囊泡是否经过退火。第二步的速率对这些处理敏感。膜蛋白也能插入液晶相的预先形成的囊泡中,但这一步比在凝胶相中的囊泡要慢。液晶相中的不含蛋白质和含蛋白质的囊泡之间的融合极其缓慢。数据表明,纯膜蛋白自发插入预先形成的囊泡可能是一个容易发生的事件,并且将膜蛋白整体重组到预先形成的单层囊泡中可能比人们所认识到的更容易实现。