Cabot M C, Gatt S
Biochim Biophys Acta. 1976 Apr 22;431(1):105-15. doi: 10.1016/0005-2760(76)90264-2.
The hydrolysis of monoacylglycerol and diacylglycerol by rat brain microsomes was followed by measuring the release of glycerol and monooleylglycerol from dispersions of water insoluble glyceryl esters of oleic acid. The microsomes showed three lipolytic activities. One activity, optimal at pH 4.8, catalyzed the hydrolysis of diacylglycerol but not monoacylglycerol. Two other lipolytic activities, optimal at pH 8.0-8.6, catalyzed the hydrolysis of both diacylglycerol and monoacylglycerol. The pH 8.0-8.6 activities were sensitive to heat and SH-reagents. Detergents were inhibitory in all cases. Extraction of the microsomes with KCl, KSCN, urea or Triton X-100 did not change the ratio of diacylglycerol hydrolysis at pH 4.8 and 8.0. The results of subcellular fractionation studies showed that there was no significant enrichment of the acid lipase in any fraction.
通过测量油酸水不溶性甘油酯分散体中甘油和单油酰甘油的释放,来跟踪大鼠脑微粒体对单酰甘油和二酰甘油的水解情况。微粒体表现出三种脂解活性。一种活性在pH 4.8时最佳,催化二酰甘油的水解,但不催化单酰甘油的水解。另外两种脂解活性在pH 8.0 - 8.6时最佳,催化二酰甘油和单酰甘油的水解。pH 8.0 - 8.6的活性对热和巯基试剂敏感。在所有情况下,去污剂都有抑制作用。用氯化钾、硫氰酸钾、尿素或曲拉通X - 100提取微粒体不会改变pH 4.8和8.0时二酰甘油水解的比例。亚细胞分级分离研究结果表明,任何分级中酸性脂肪酶均无明显富集。