Mooibroek M J, Cook H W, Clarke J T, Spence M W
J Neurochem. 1985 May;44(5):1551-8. doi: 10.1111/j.1471-4159.1985.tb08794.x.
Cultured murine neuroblastoma cells contain a neutral, Mg2+-stimulated sphingomyelinase and an alkaline phosphatidylcholine-hydrolyzing activity that are enriched in the plasma membrane fraction. The reaction products of sphingomyelin catabolism are phosphocholine and ceramide and those of phosphatidylcholine, glycerophosphocholine and fatty acid. These reactions were studied with endogenous as well as exogenous liposomal substrates. With both exogenous and endogenous substrates, the sphingomyelinase activity was stimulated two- to threefold by Mg2+ and a further three- to fourfold by volatile anesthetic agents. Stimulation was concentration-dependent and corresponded to anesthetic potency: methoxyflurane greater than halothane greater than enflurane. Greater than 80% of the plasma membrane sphingomyelin was hydrolyzed within 2 h in the presence of Mg2+ and anesthetic. In contrast, the activity with exogenous and endogenous phosphatidylcholine was unaffected by Mg2+ or Ca2+ and was markedly inhibited (50-80%) by anesthetic agents. The degree of inhibition was concentration-dependent and corresponded to anesthetic potency. The quantitative importance of choline-containing lipids in cell membranes, the relatively exclusive localization of the neutral Mg2+-stimulated sphingomyelinase in cells of neural origin, the totally different type of hydrolytic attack on phosphatidylcholine, and the reciprocal effects of anesthetics on the hydrolysis of these two lipids strongly suggest important roles for these activities in cell membranes in general and in the neuron in particular.
培养的小鼠神经母细胞瘤细胞含有一种中性的、Mg2+刺激的鞘磷脂酶和一种碱性磷脂酰胆碱水解活性,它们在质膜部分中富集。鞘磷脂分解代谢的反应产物是磷酸胆碱和神经酰胺,而磷脂酰胆碱的反应产物是甘油磷酸胆碱和脂肪酸。这些反应使用内源性和外源性脂质体底物进行了研究。对于外源性和内源性底物,Mg2+可使鞘磷脂酶活性提高2至3倍,挥发性麻醉剂可使其进一步提高3至4倍。刺激是浓度依赖性的,且与麻醉效力相对应:甲氧氟烷大于氟烷大于恩氟烷。在Mg2+和麻醉剂存在的情况下,2小时内超过80%的质膜鞘磷脂被水解。相比之下,外源性和内源性磷脂酰胆碱的活性不受Mg2+或Ca2+的影响,但被麻醉剂显著抑制(50-80%)。抑制程度是浓度依赖性的,且与麻醉效力相对应。细胞膜中含胆碱脂质的数量重要性、中性Mg2+刺激的鞘磷脂酶在神经源性细胞中的相对排他性定位、对磷脂酰胆碱完全不同类型的水解攻击以及麻醉剂对这两种脂质水解的相互影响,强烈表明这些活性在一般细胞膜中,特别是在神经元中具有重要作用。