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脂蛋白脂肪酶在磷脂界面催化三油酰甘油水解。油酸胆固醇酯对催化作用的影响。

Lipoprotein lipase hydrolysis of trioleoylglycerol in a phospholipid interface. Effect of cholesteryl oleate on catalysis.

作者信息

Demel R A, Jackson R L

出版信息

J Biol Chem. 1985 Aug 15;260(17):9589-92.

PMID:4019488
Abstract

The effect of cholesteryl oleate on the lipoprotein lipase-catalyzed hydrolysis of trioleoylglycerol was determined in monolayers of egg phosphatidylcholine at a constant surface pressure of 24 mN m-1. The phospholipid monolayers contained 1.0 to 7.5 mol % trioleoylglycerol and various amounts (0 to 20 mol %) of cholesteryl oleate. The initial rates of trioleoylglycerol hydrolysis were determined with lipoprotein lipase purified from bovine milk. In phospholipid monolayers containing 5.0 or 7.5 mol % trioleoylglycerol, the further addition of cholesteryl oleate caused a decrease in lipoprotein lipase activity. In contrast, addition of cholesteryl oleate to phospholipid monolayers containing 1.0 or 2.5 mol % trioleoylglycerol enhanced enzyme activity; a 3-fold enhancement was observed with 5.0-7.5 mol % cholesteryl oleate. Based on force-area measurements, the cholesteryl ester-mediated decrease in lipoprotein lipase activity observed at high substrate concentrations may be explained by displacement of trioleoylglycerol from the interface, thereby reducing the interfacial trioleoylglycerol concentration available for enzyme catalysis. One explanation for the cholesteryl oleate-mediated enhancement of lipoprotein lipase activity at low trioleoylglycerol concentrations is that the additional spreading of cholesteryl oleate disrupts microemulsions of trioleoylglycerol, thereby increasing the effective monomer substrate concentration available for enzyme catalysis. Based on these monolayer studies with model systems, we suggest that the relative amount of cholesteryl esters in plasma triacylglycerol-rich lipoproteins plays a regulatory role in determining the rate at which triacylglycerols are cleared from the circulation.

摘要

在24 mN m-1的恒定表面压力下,在卵磷脂酰胆碱单层中测定了胆固醇油酸酯对脂蛋白脂肪酶催化的三油酰甘油水解的影响。磷脂单层含有1.0至7.5 mol%的三油酰甘油和不同量(0至20 mol%)的胆固醇油酸酯。用从牛乳中纯化的脂蛋白脂肪酶测定三油酰甘油水解的初始速率。在含有5.0或7.5 mol%三油酰甘油的磷脂单层中,进一步添加胆固醇油酸酯会导致脂蛋白脂肪酶活性降低。相反,向含有1.0或2.5 mol%三油酰甘油的磷脂单层中添加胆固醇油酸酯会增强酶活性;在含有5.0 - 7.5 mol%胆固醇油酸酯时观察到活性增强了3倍。基于力-面积测量,在高底物浓度下观察到的胆固醇酯介导的脂蛋白脂肪酶活性降低可能是由于三油酰甘油从界面上被取代,从而降低了可用于酶催化的界面三油酰甘油浓度。对于在低三油酰甘油浓度下胆固醇油酸酯介导的脂蛋白脂肪酶活性增强的一种解释是,胆固醇油酸酯的额外铺展破坏了三油酰甘油的微乳液,从而增加了可用于酶催化的有效单体底物浓度。基于这些对模型系统的单层研究,我们认为富含三酰甘油的血浆脂蛋白中胆固醇酯的相对含量在决定三酰甘油从循环中清除的速率方面起调节作用。

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