Wirtz K W, Vriend G, Westerman J
Eur J Biochem. 1979 Feb 15;94(1):215-21. doi: 10.1111/j.1432-1033.1979.tb12888.x.
The mode of action of the phosphatidylcholine exchange protein from bovine liver has been studied by using unilamellar vesicles and multilamellar liposomes both of which membranes contain phosphatidylcholine and phosphatidic acid. The protein-mediated exchange of phosphatidylcholine between vesicles and liposomes fit the kinetic model presented in a previous study [V.D. Besselaar et al. (1975) Biochemistry, 1j, 1852]. Kinetic analysis of the rates of exchange indicate that the apparent dissociation constant of the exchange protein-vesicle complex decreases with an increasing phosphatidic acid content of the vesicles. Both vesicles and liposomes of 10 mol% phosphatidic acid show the same dissociation constant; on the other hand, both the formation and the disruption of the protein-membrane complex was 50--100-times higher for the vesicles than for the liposomes. This implies that the exchange protein can discriminate between vesicles and liposomes. Equilibrium gel chromatography of a column of Bio Gel A-5m confirmed that the exchange protein binds more strongly to vesicles of an increased phosphatidic acid content. The protein-mediated exchange of phosphatidylcholine in the vesicle-liposome system demonstrates a pH optimum at 4.0 to 5.5. The kinetic analysis at pH 5.0 as compared to pH 7.4 indicates that the enhanced exchange at pH 5.0 can solely be accounted for by altered interaction of the exchange protein with the liposomes.
利用单层囊泡和多层脂质体研究了牛肝磷脂酰胆碱交换蛋白的作用模式,这两种膜均含有磷脂酰胆碱和磷脂酸。蛋白介导的囊泡与脂质体之间磷脂酰胆碱的交换符合先前研究[V.D. Besselaar等人(1975年)《生物化学》,1j,1852]中提出的动力学模型。交换速率的动力学分析表明,交换蛋白 - 囊泡复合物的表观解离常数随囊泡中磷脂酸含量的增加而降低。磷脂酸含量为10摩尔%的囊泡和脂质体显示出相同的解离常数;另一方面,蛋白 - 膜复合物的形成和解离对于囊泡来说比脂质体高50 - 100倍。这意味着交换蛋白可以区分囊泡和脂质体。Bio Gel A - 5m柱的平衡凝胶色谱法证实,交换蛋白与磷脂酸含量增加的囊泡结合更强。囊泡 - 脂质体系统中蛋白介导的磷脂酰胆碱交换在pH 4.0至5.5时显示出最佳pH值。与pH 7.4相比,在pH 5.0时的动力学分析表明,pH 5.0时交换增强完全是由于交换蛋白与脂质体相互作用的改变。