Ali Yassine Ben, Carrière Frédéric, Verger Robert, Petry Stefan, Muller Günter, Abousalham Abdelkarim
Enzymology at Interfaces and Physiology of Lipolysis, Unité Propre de Recherche 9025, Centre National de la Recherche Scientifique, 13402 Marseille Cedex 20, France.
J Lipid Res. 2005 May;46(5):994-1000. doi: 10.1194/jlr.M400509-JLR200. Epub 2005 Feb 16.
Hormone-sensitive lipase (HSL) contributes importantly to the hydrolysis of cholesteryl ester in steroidogenic tissues, releasing the cholesterol required for adrenal steroidogenesis. HSL has broad substrate specificity, because it hydrolyzes triacylglycerols (TAGs), diacylglycerols, monoacylglycerols, and cholesteryl esters. In this study, we developed a specific cholesterol esterase assay using cholesterol oleate (CO) dispersed in phosphatidylcholine and gum arabic by sonication. To continuously monitor the hydrolysis of CO by HSL, we used the pH-stat technique. For the sake of comparison, the hydrolysis of CO dispersion was also tested using other cholesteryl ester-hydrolyzing enzymes. The specific activities measured on CO were found to be 18, 100, 27, and 3 micromol/min/mg for HSL, cholesterol esterase from Pseudomonas species, Candida rugosa lipase-3, and cholesterol esterase from bovine pancreas, respectively. The activity of HSL on CO is approximately 4- to 5-fold higher than on long-chain TAGs. In contrast, with all other enzymes tested, the rates of TAG hydrolysis were higher than those of CO hydrolysis. The relatively higher turnover of HSL on CO observed in vitro adds further molecular insight on the physiological importance of HSL in cholesteryl ester catabolism in vivo. Thus, HSL could be considered more as a cholesteryl ester hydrolase than as a TAG lipase.
激素敏感性脂肪酶(HSL)对类固醇生成组织中胆固醇酯的水解起着重要作用,释放出肾上腺类固醇生成所需的胆固醇。HSL具有广泛的底物特异性,因为它能水解三酰甘油(TAGs)、二酰甘油、单酰甘油和胆固醇酯。在本研究中,我们通过超声处理,开发了一种使用分散在磷脂酰胆碱和阿拉伯胶中的油酸胆固醇(CO)的特异性胆固醇酯酶测定方法。为了持续监测HSL对CO的水解作用,我们使用了pH计技术。为了进行比较,还使用其他胆固醇酯水解酶测试了CO分散体的水解情况。对于HSL、假单胞菌属胆固醇酯酶、皱褶假丝酵母脂肪酶-3和牛胰腺胆固醇酯酶,以CO为底物测得的比活性分别为18、100、27和3微摩尔/分钟/毫克。HSL对CO的活性比对长链TAGs的活性高约4至5倍。相比之下,对于所有其他测试的酶,TAG水解速率高于CO水解速率。体外观察到的HSL对CO相对较高的周转率,为HSL在体内胆固醇酯分解代谢中的生理重要性提供了进一步的分子见解。因此,HSL与其说是一种TAG脂肪酶,不如说是一种胆固醇酯水解酶。