Shirai K, Fitzharris T J, Shinomiya M, Muntz H G, Harmony J A, Jackson R L, Quinn D M
J Lipid Res. 1983 Jun;24(6):721-30.
To elucidate the mechanism by which apolipoprotein C-II (apoC-II) enhances the activity of lipoprotein lipase (LpL), discoidal phospholipid complexes were prepared with apoC-III and di[(14)C]palmitoyl phosphatidylcholine (DPPC) and containing various amounts of apoC-II. The rate of DPPC hydrolysis catalyzed by purified bovine milk LpL was determined on the isolated complexes. The rate of hydrolysis was optimal at pH 8.0. Analysis of enzyme kinetic data over a range of phospholipid concentrations revealed that the major effect of apoC-II was to increase the maximal velocity (V(max)) some 50-fold with a limited effect on the Michaelis constant (K(m)). V(max) of the apoC-III complex containing no apoC-II was 9.2 nmol/min per mg LpL vs. 482 nmol/min per mg LpL for the complex containing only apoC-II. The effect of apoC-II on enzyme kinetic parameters for LpL-catalyzed hydrolysis of DPPC complexes was compared to that on the parameters for hydrolysis of DPPC and trioleoylglycerol incorporated into guinea pig very low density lipoproteins (VLDL(p)) which lack the equivalent of human apoC-II. Tri[(3)H]oleoylglycerol-labeled VLDL(p) were obtained by perfusion of guinea pig liver with [(3)H]oleic acid. Di[(14)C]palmitoyl phosphatidylcholine was incorporated into the VLDL(p) by incubation of VLDL(p) with sonicated vesicles of di[(14)C]palmitoyl phosphatidylcholine and purified bovine liver phosphatidylcholine exchange protein. The rates of LpL-catalyzed hydrolysis of trioleoylglycerol and DPPC were determined at pH 7.4 and 8.5 in the presence and absence of apoC-II. In the presence of apoC-II, the V(max) for DPPC hydrolysis in guinea pig VLDL(p) increased at both pH 7.4 and pH 8.5 (2.4- and 3.2-fold, respectively); the value of K(m) did not change at either pH (0.23 mm). On the other hand, the kinetic value of K(m) for triacylglycerol hydrolysis in the presence of apoC-II decreased at both pH 7.4 (3.05 vs. 0.54 mm) and pH 8.5 (2.73 vs. 0.62 mm). These kinetic studies suggest that apoC-II enhances phospholipid hydrolysis by LpL in apoC-III-DPPC discoidal complexes and VLDL(p) mainly by increasing the V(max) of the enzyme for the substrates, whereas the activator protein primarily causes a decrease in the apparent K(m) for triacylglycerol hydrolysis.-Shirai, K., T. J. Fitzharris, M. Shinomiya, H. G. Muntz, J. A. K. Harmony, R. L. Jackson and D. M. Quinn. Lipoprotein lipase-catalyzed hydrolysis of phosphatidylcholine of guinea pig very low density lipoproteins and discoidal complexes of phospholipid and apolipoprotein: effect of apolipoprotein C-II on the catalytic mechanism.
为阐明载脂蛋白C-II(apoC-II)增强脂蛋白脂肪酶(LpL)活性的机制,用apoC-III和二[(14)C]棕榈酰磷脂酰胆碱(DPPC)制备了盘状磷脂复合物,并含有不同量的apoC-II。在分离出的复合物上测定了纯化的牛乳LpL催化的DPPC水解速率。水解速率在pH 8.0时最佳。对一系列磷脂浓度下的酶动力学数据进行分析表明,apoC-II的主要作用是使最大速度(Vmax)增加约50倍,而对米氏常数(Km)的影响有限。不含apoC-II的apoC-III复合物的Vmax为9.2 nmol/(min·mg LpL),而仅含apoC-II的复合物的Vmax为482 nmol/(min·mg LpL)。将apoC-II对LpL催化DPPC复合物水解的酶动力学参数的影响与对豚鼠极低密度脂蛋白(VLDL(p))中DPPC和三油酰甘油水解参数的影响进行了比较,豚鼠极低密度脂蛋白缺乏相当于人apoC-II的成分。通过用[(3)H]油酸灌注豚鼠肝脏获得三[(3)H]油酰甘油标记的VLDL(p)。通过将VLDL(p)与二[(14)C]棕榈酰磷脂酰胆碱和纯化的牛肝磷脂酰胆碱交换蛋白的超声处理囊泡孵育,将二[(14)C]棕榈酰磷脂酰胆碱掺入VLDL(p)中。在pH 7.4和8.5以及有无apoC-II的情况下测定LpL催化的三油酰甘油和DPPC水解速率。在apoC-II存在下,豚鼠VLDL(p)中DPPC水解的Vmax在pH 7.4和pH 8.5时均增加(分别增加2.4倍和3.2倍);在任一pH下Km值均未改变(0.23 mmol/L)。另一方面,在apoC-II存在下,三酰甘油水解的Km动力学值在pH 7.4(3.05对0.54 mmol/L)和pH 8.5(2.73对0.62 mmol/L)时均降低。这些动力学研究表明,apoC-II主要通过增加酶对底物的Vmax来增强LpL在apoC-III-DPPC盘状复合物和VLDL(p)中对磷脂的水解,而激活蛋白主要导致三酰甘油水解的表观Km降低。-白井,K.,T. J. 菲茨哈里斯,M. 筱宫,H. G. 芒茨,J. A. K. 哈莫尼,R. L. 杰克逊和D. M. 奎因。脂蛋白脂肪酶催化豚鼠极低密度脂蛋白的磷脂酰胆碱水解以及磷脂和载脂蛋白的盘状复合物水解:载脂蛋白C-II对催化机制的影响。