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纯化的胎盘鞘磷脂酶对磷脂酰胆碱和4-甲基伞形酮基磷酰胆碱的水解作用。

Phosphatidylcholine and 4-methylumbelliferyl phosphorylcholine hydrolysis by purified placental sphingomyelinase.

作者信息

Freeman S J, Shankaran P, Wolfe L S, Callahan J W

出版信息

Can J Biochem Cell Biol. 1985 Apr;63(4):272-7. doi: 10.1139/o85-040.

Abstract

We present evidence which indicates that highly purified placental acid sphingomyelinase hydrolyses [14C]phosphatidylcholine [( 14C]PC) and the synthetic phosphodiester 4-methylumbelliferyl phosphorylcholine (4-MUPC). Hydrolysis was achieved by phospholipase C phosphodiesterase action. Of the several detergents tested, sodium taurocholate alone was necessary for PC hydrolysis, while 4-MUPC was hydrolysed independent of any detergent requirement. The pH optima for the reactions were 4.6-4.8 for PC hydrolysis and 4.8-5.0 for 4-MUPC hydrolysis. As with sphingomyelin hydrolysis, degradation of both PC and 4-MUPC was inhibited by 5'-, 3'-, and 2'-AMP, 5'-AMP being the most effective of the three. Furthermore, the phosphodiesterase activity against PC and 4-MUPC copurified with sphingomyelinase from human placenta and cross-reacted with a specific anti-sphingomyelinase monoclonal antibody, strongly indicating identity of the phosphodiesterases. This explains phospholipase C deficiency in sphingomyelinase-deficient Niemann-Pick disease cells.

摘要

我们提供的证据表明,高度纯化的胎盘酸性鞘磷脂酶可水解[14C]磷脂酰胆碱[(14C)PC]和合成磷酸二酯4-甲基伞形酮基磷酰胆碱(4-MUPC)。水解是通过磷脂酶C磷酸二酯酶的作用实现的。在测试的几种去污剂中,仅牛磺胆酸钠是PC水解所必需的,而4-MUPC的水解则与任何去污剂需求无关。PC水解反应的最适pH为4.6 - 4.8,4-MUPC水解反应的最适pH为4.8 - 5.0。与鞘磷脂水解一样,PC和4-MUPC的降解均受到5'-、3'-和2'-AMP的抑制,其中5'-AMP是三者中最有效的。此外,针对PC和4-MUPC的磷酸二酯酶活性与来自人胎盘的鞘磷脂酶共纯化,并与特异性抗鞘磷脂酶单克隆抗体发生交叉反应,强烈表明磷酸二酯酶具有同一性。这解释了鞘磷脂酶缺乏的尼曼-匹克病细胞中磷脂酶C的缺乏。

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