Duncan Robin E, Sarkadi-Nagy Eszter, Jaworski Kathy, Ahmadian Maryam, Sul Hei Sook
Department of Nutritional Science and Toxicology, University of California, Berkeley, California 94720.
Department of Nutritional Science and Toxicology, University of California, Berkeley, California 94720.
J Biol Chem. 2008 Sep 12;283(37):25428-25436. doi: 10.1074/jbc.M804146200. Epub 2008 Jul 9.
Phospholipases A(2) (PLA(2)s) catalyze hydrolysis of fatty acids from the sn-2 position of phospholipids. Here we report the identification and characterization of a membrane-associated intracellular calcium-dependent, adipose-specific PLA(2) that we named AdPLA (adipose-specific phospholipase A(2)). We found that AdPLA was highly expressed specifically in white adipose tissue and was induced during preadipocyte differentiation into adipocytes. Clearance of AdPLA by immunoprecipitation significantly decreased PLA activity in white adipose tissue lysates but had no effect on liver lysates, where expression was hardly detectable. In characterizing AdPLA, we employed radiochemical assays with TLC analysis of the enzyme activity of lysates from COS-7 cells overexpressing AdPLA. For kinetic studies, we produced purified recombinant AdPLA for use in a lipoxidase-coupled spectrophotometric assay. AdPLA generated free fatty acid and lysophospholipid from phosphatidylcholine with a preference for hydrolysis at the sn-2 position. Although we found low but detectable lysophospholipase activity, AdPLA showed no significant activity against a variety of other lipid substrates. Calcium was found to activate AdPLA but was not essential for activity. Studies with known phospholipase inhibitors, including bromoenolactone, methyl arachidonyl fluorophosphate, AACOCF(3), 7,7-dimethyl-5,8-eicosadienoic acid, and thioetheramide, supported that AdPLA is a phospholipase. Mutational studies showed that His-23 and Cys-113 are critical for activity of AdPLA and suggested that AdPLA is likely a His/Cys PLA(2). Overall, although AdPLA is similar to other histidine phospholipases in pH and calcium dependence, AdPLA showed different characteristics in many regards, including predicted catalytic mechanism. AdPLA may therefore represent the first member of a new group of PLA(2)s, group XVI.
磷脂酶A(2)(PLA(2))催化磷脂sn-2位脂肪酸的水解。在此,我们报告了一种膜相关的细胞内钙依赖性脂肪特异性PLA(2)的鉴定和特性,我们将其命名为AdPLA(脂肪特异性磷脂酶A(2))。我们发现AdPLA在白色脂肪组织中高度特异性表达,并在前脂肪细胞分化为脂肪细胞的过程中被诱导。通过免疫沉淀清除AdPLA可显著降低白色脂肪组织裂解物中的PLA活性,但对肝脏裂解物没有影响,在肝脏中几乎检测不到其表达。在对AdPLA进行特性分析时,我们采用了放射化学分析法,并通过TLC分析过表达AdPLA的COS-7细胞裂解物的酶活性。为了进行动力学研究我们制备了纯化的重组AdPLA,用于脂氧化酶偶联分光光度测定法。AdPLA从磷脂酰胆碱生成游离脂肪酸和溶血磷脂,优先在sn-2位水解。尽管我们发现有低但可检测到的溶血磷脂酶活性,但AdPLA对多种其他脂质底物没有显著活性。发现钙可激活AdPLA,但对活性不是必需条件。使用包括溴代烯醇内酯、甲基花生四烯酰基氟磷酸酯、AACOCF(3)、7,7-二甲基-5,8-二十碳二烯酸和硫醚酰胺在内的已知磷脂酶抑制剂进行的研究支持AdPLA是一种磷脂酶。突变研究表明,His-23和Cys-113对AdPLA的活性至关重要,并表明AdPLA可能是一种His/Cys PLA(2)。总体而言,尽管AdPLA在pH和钙依赖性方面与其他组氨酸磷脂酶相似,但AdPLA在许多方面表现出不同的特性,包括预测的催化机制。因此,AdPLA可能代表了PLA(2)新组(第十六组)的第一个成员。