Schenkman S, Araujo P S, Dijkman R, Quina F H, Chaimovich H
Biochim Biophys Acta. 1981 Dec 21;649(3):633-47. doi: 10.1016/0005-2736(81)90168-1.
Small unilamellar vesicles of egg phosphatidylcholine (PC) or dimyristoylphosphatidylcholine, mixed with small unilamellar vesicles labelled with 2-(10-(1-pyrene)decanoyl)phosphatidylcholine, exhibit a constant average size and excimer to monomer (E/M) ratio for several hours when incubated at pH 3.6 at a temperature higher than the phase transition temperature (Tc) of the lipids. Addition of bovine serum albumin to this system produces a transient turbidity increase, a fast decrease in the E/M ratio, a partial loss of vesicle-entrapped [14C]sucrose and a measurable leak-in of externally added sucrose. Sepharose 4B filtration of the system demonstrates that the E/M ratio decrease is strictly paralleled by the formation of liposomes which exhibit a low E/M ratio and a hydrodynamic radius larger than that of small unilamellar vesicles. These data demonstrate that the E/M ratio decrease can be unequivocally ascribed to a vesicle-vesicle fusion process induced by serum albumin. The rate of serum-albumin induced fusion of small unilamellar vesicles is: (a) maximal at a stoichiometric ratio of approx. 2 albumins per vesicle; (b) sensitive to the nature of the lipid and; (c) not altered when human serum albumin replaces bovine serum albumin. The rate of albumin-induced fusion of dimyristoylphosphatidylcholine small unilamellar vesicles is higher below the Tc of the lipid and increases with temperature above the Tc. The formation of protein-bound aggregates with defined stoichiometries and a high local vesicle concentration, as well as changes in the local degree of hydration, are proposed to be the driving forces for the protein-induced vesicle fusion in this system.
将鸡蛋磷脂酰胆碱(PC)或二肉豆蔻酰磷脂酰胆碱的小单层囊泡与用2-(10-(1-芘)癸酰基)磷脂酰胆碱标记的小单层囊泡混合,当在高于脂质相变温度(Tc)的温度下于pH 3.6孵育时,在数小时内呈现出恒定的平均尺寸和准分子与单体(E/M)比率。向该系统中添加牛血清白蛋白会导致短暂的浊度增加、E/M比率快速下降、囊泡包裹的[14C]蔗糖部分损失以及外部添加的蔗糖可测量的渗漏。对该系统进行琼脂糖4B过滤表明,E/M比率的下降与形成低E/M比率且流体动力学半径大于小单层囊泡的脂质体严格平行。这些数据表明,E/M比率的下降可以明确归因于血清白蛋白诱导的囊泡-囊泡融合过程。血清白蛋白诱导小单层囊泡融合的速率为:(a)在约每囊泡2个白蛋白的化学计量比时最大;(b)对脂质的性质敏感;(c)用人血清白蛋白替代牛血清白蛋白时不变。二肉豆蔻酰磷脂酰胆碱小单层囊泡的白蛋白诱导融合速率在脂质的Tc以下较高,并随温度高于Tc而增加。具有确定化学计量比和高局部囊泡浓度的蛋白质结合聚集体的形成以及局部水合程度的变化,被认为是该系统中蛋白质诱导囊泡融合的驱动力。