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化合物48/80和离子载体A23187对大鼠肥大细胞膜磷脂周转的差异性激活作用。

Differential activation of membrane phospholipid turnover by compound 48/80 and ionophore A23187 in rat mast cells.

作者信息

Imai A, Ishizuka Y, Nakashima S, Nozawa Y

出版信息

Arch Biochem Biophys. 1984 Jul;232(1):259-68. doi: 10.1016/0003-9861(84)90542-3.

Abstract

Membrane phospholipid turnover was investigated during histamine release from rat mast cells. Addition of calcium ionophore A23187 (0.5 microgram/ml) to mast cells prelabeled with [3H]glycerol induced the rapid and progressive increase in phosphatidic acid (PA) and 1,2-diacylglycerol (DG), which was concomitant with the small rise in phosphatidylinositol (PI). Loss of the level in triacylglycerol (TG) was very marked. Polyamine compound 48/80 (5 micrograms/ml) was shown to cause rises in PA, 1,2-DG, and PI without any significant changes in TG. Both stimuli increased incorporation of exogenous [3H]glycerol into phospholipids, indicating the involvement of de novo synthesis in phospholipid metabolism. Studies with [3H]arachidonic acid-labeled mast cells showed an enhanced liberation of radioactive arachidonate and metabolites upon histamine release. There were associated decreases of radioactivity in phosphatidylcholine (PC) and TG when exposed to A23187, while phosphatidylethanolamine (PE) was degraded as a result of 48/80 activation. The transient increases of [3H]arachidonoyl-1,2-DG and PA were caused by 48/80, while A23187 showed a gradual rise in the radioactivity in these two lipid fractions. These findings reflect activation of phospholipase C. When mast cells were activated by low concentrations of A23187 (0.1 microgram/ml) and 48/80 (0.5 microgram/ml), different behaviors of PI metabolism were observed. An early degradation of PI and a subsequent formation of 1,2-DG and PA suggest that the lower concentrations of these agents stimulate the PI cycle initiated by PI breakdown rather than de novo synthesis. These results demonstrate that marked and selective changes in membrane phospholipid metabolism occur during histamine release from mast cells, and that these reactions seem to be controlled by the coordination of degradation and biosynthesis, depending on the type and the concentration of stimulants. A23187 stimulates arachidonate release perhaps via the cleavages of PC and TG, whereas 48/80 liberates arachidonate from PE.

摘要

在大鼠肥大细胞释放组胺的过程中,对膜磷脂周转情况进行了研究。向预先用[³H]甘油标记的肥大细胞中添加钙离子载体A23187(0.5微克/毫升),会导致磷脂酸(PA)和1,2 - 二酰基甘油(DG)迅速且持续增加,同时磷脂酰肌醇(PI)略有升高。三酰基甘油(TG)水平的下降非常显著。多胺化合物48/80(5微克/毫升)可使PA、1,2 - DG和PI升高,而TG无明显变化。两种刺激均增加了外源性[³H]甘油掺入磷脂的量,表明从头合成参与了磷脂代谢。对用[³H]花生四烯酸标记的肥大细胞的研究表明,组胺释放时放射性花生四烯酸及其代谢产物的释放增强。暴露于A23187时,磷脂酰胆碱(PC)和TG中的放射性降低,而48/80激活则导致磷脂酰乙醇胺(PE)降解。48/80导致[³H]花生四烯酰 - 1,2 - DG和PA短暂增加,而A23187使这两个脂质组分中的放射性逐渐升高。这些发现反映了磷脂酶C的激活。当肥大细胞用低浓度的A23187(0.1微克/毫升)和48/80(0.5微克/毫升)激活时,观察到PI代谢的不同行为。PI的早期降解以及随后1,2 - DG和PA的形成表明,这些药物的较低浓度刺激了由PI分解引发的PI循环,而非从头合成。这些结果表明,肥大细胞释放组胺期间,膜磷脂代谢发生了显著且选择性的变化,并且这些反应似乎受降解和生物合成的协调控制,这取决于刺激物的类型和浓度。A23187可能通过PC和TG的裂解刺激花生四烯酸释放,而48/80则从PE中释放花生四烯酸。

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