Mok A, Wong T, Filgueiras O, Casola P G, Nicholson D W, McMurray W C, Harding P G, Possmayer F
Department of Biochemistry, University of Western Ontario, London, Canada.
Biochem Cell Biol. 1988 May;66(5):425-35. doi: 10.1139/o88-051.
CDPdiacylglycerol pyrophosphatase (E.C. 3.6.1.26) activity has been examined in rat lung mitochondrial and microsomal fractions. While the mitochondrial hydrolase exhibited a broad pH optimum from pH 6-8, the microsomal activity decreased rapidly above pH 6.5. Apparent Km values of 36.2 and 23.6 microM and Vmax values of 311 and 197 pmol.min-1.mg protein-1 were observed for the mitochondrial and microsomal preparations, respectively. Addition of parachloromercuriphenylsulphonic acid led to a marked inhibition of the microsomal fraction but slightly stimulated the mitochondrial activity at low concentrations. Mercuric ions were inhibitory with both fractions. Although biosynthetic reactions utilizing CDPdiacylglycerol require divalent cations, addition of Mg2+, Mn2+, Ca2+, Zn2+, Co2+, and Cu2+ all inhibited the catabolic CDPdiacylglycerol hydrolase activity in both fractions. EDTA and EGTA also produced an inhibitory effect, especially with the mitochondrial fraction. Although addition of either adenine or cytidine nucleotides led to a decrease in activity with both fractions, the marked susceptibility to AMP previously reported for this enzyme in Escherichia coli membranes, guinea pig brain lysosomes, and pig liver mitochondria was not observed. These results indicate that rat lung mitochondria and microsomes contain specific CDPdiacylglycerol hydrolase activities, which could influence the rate of formation of phosphatidylinositol and phosphatidylglycerol for pulmonary surfactant.
已对大鼠肺线粒体和微粒体组分中的CDP二酰基甘油焦磷酸酶(E.C. 3.6.1.26)活性进行了检测。线粒体水解酶的最适pH范围较宽,为pH 6 - 8,而微粒体活性在pH 6.5以上迅速下降。线粒体和微粒体制剂的表观Km值分别为36.2和23.6 microM,Vmax值分别为311和197 pmol·min⁻¹·mg蛋白⁻¹。添加对氯汞基苯磺酸可显著抑制微粒体组分,但在低浓度时对线粒体活性有轻微刺激作用。汞离子对两种组分均有抑制作用。尽管利用CDP二酰基甘油的生物合成反应需要二价阳离子,但添加Mg²⁺、Mn²⁺、Ca²⁺、Zn²⁺、Co²⁺和Cu²⁺均抑制了两种组分中CDP二酰基甘油分解代谢水解酶的活性。EDTA和EGTA也产生了抑制作用,尤其是对线粒体组分。尽管添加腺嘌呤或胞嘧啶核苷酸均导致两种组分的活性降低,但未观察到先前报道的该酶在大肠杆菌膜、豚鼠脑溶酶体和猪肝线粒体中对AMP的明显敏感性。这些结果表明,大鼠肺线粒体和微粒体含有特定的CDP二酰基甘油水解酶活性,这可能会影响肺表面活性剂中磷脂酰肌醇和磷脂酰甘油的形成速率。