Nakamura K, Mizushima S
Biochim Biophys Acta. 1975 Dec 16;413(3):371-93. doi: 10.1016/0005-2736(75)90122-4.
A method was developed for the reassembly of membranous vesicle from the sodium deoxycholate-dissociated outer membrane components of Escherichia coli. The removal of the detergent by dialysis and the presence of Mg2+ were essential for the reassembly. Membrane protein alone did not form any membranous structure. Closed membranous vesicles similar to the native outer membrane were reassembled only when protein was mixed with both lipopolysaccharide and phospholipid in deoxycholate solution and subsequently dialized. The membrane showed a distinct trilaminar structure with a center-to-center distance between two dark lines of 53 A, which is a characteristic of the native outer membrane. This characteristic trilaminar structure was shown to be due to the presence of lipopolysaccharide. Phospholipd was required for the vesicularization of membrane. Lipopolysaccharide and/or phospholipid formed a membranous structure in the absence of protein, while the morphology of their negatively stained sample was quite different from that of the native outer membrane unless the outer membrane protein was added to the reassembly mixture. The protein from the cytoplasmic membrane was unable to reform membranous vesicle with lipopolysaccharide and phospholipid, indicating that the reassembly system discriminated outer membrane proteins from cytoplasmic proteins.
开发了一种从大肠杆菌经脱氧胆酸钠解离的外膜成分重新组装膜泡的方法。通过透析去除去污剂以及存在Mg2+对于重新组装至关重要。仅膜蛋白不会形成任何膜结构。只有当蛋白质与脂多糖和磷脂在脱氧胆酸盐溶液中混合并随后透析时,才会重新组装出类似于天然外膜的封闭膜泡。该膜呈现出明显的三层结构,两条暗线之间的中心距为53埃,这是天然外膜的特征。这种特征性的三层结构被证明是由于脂多糖的存在。磷脂是膜泡化所必需的。脂多糖和/或磷脂在没有蛋白质的情况下形成膜结构,而它们的负染样品的形态与天然外膜的形态有很大不同,除非将外膜蛋白添加到重新组装混合物中。来自细胞质膜的蛋白质无法与脂多糖和磷脂重新形成膜泡,这表明重新组装系统能够区分外膜蛋白和细胞质蛋白。