McMaster C R, Lu C Q, Choy P C
Department of Biochemistry and Molecular Biology, Faculty of Medicine, University of Manitoba, Winnipeg, Canada.
Lipids. 1992 Dec;27(12):945-9. doi: 10.1007/BF02535569.
The distribution of plasmalogenase for the hydrolysis of 1-alkenyl-2-acyl-sn-glycero-3-phosphoethanolamine (plasmenylethanolamine) in the subcellular fractions of guinea pig tissues was examined. Plasmalogenase activity was found in high abundance in the cytosolic fractions of the brain and the heart. Assessment of microsomal marker enzyme activities in the cytosolic fraction revealed that plasmalogenase activity in the cytosol was not due to microsomal contaminations. The characteristics of the cytosolic plasmalogenase were very similar to the microsomal enzyme with respect to the pH profile of the reaction, the presence of divalent cations and Km values for plasmenylethanolamine. However, the cytosolic enzyme was slightly less stable at 55 degrees C than the microsomal enzyme. Cytosolic enzyme activity was eluted as a broad peak in Sepharose 6B chromatography with an average molecular weight of 250,000. Our results demonstrate that most of brain plasmalogenase activity is soluble which makes the brain cytosol an excellent source to initiate the purification of this enzyme.
研究了豚鼠组织亚细胞组分中用于水解1-烯基-2-酰基-sn-甘油-3-磷酸乙醇胺(缩醛磷脂酰乙醇胺)的缩醛磷脂酶的分布。在脑和心脏的胞质组分中发现了大量的缩醛磷脂酶活性。对胞质组分中微粒体标记酶活性的评估表明,胞质中的缩醛磷脂酶活性并非由微粒体污染所致。就反应的pH曲线、二价阳离子的存在以及缩醛磷脂酰乙醇胺的Km值而言,胞质缩醛磷脂酶的特性与微粒体酶非常相似。然而,胞质酶在55℃时的稳定性略低于微粒体酶。在琼脂糖6B色谱中,胞质酶活性以一个宽峰洗脱,平均分子量为250,000。我们的结果表明,脑内大部分缩醛磷脂酶活性是可溶的,这使得脑胞质成为启动该酶纯化的极佳来源。