Brami B A, Leli U, Hauser G
Ralph Lowell Laboratories, McLean Hospital, Belmont, MA 02178.
J Neurochem. 1993 Mar;60(3):1137-42. doi: 10.1111/j.1471-4159.1993.tb03264.x.
Previous studies have shown that in the neuroblastoma x glioma hybrid cell line NG108-15 lithium is able to induce an increase in diacylglycerol levels. This effect was shown to be enhanced by the presence of bradykinin. Another striking effect of lithium was a marked gain in the level of the liponucleotide phosphatidyl-CMP. Increased phosphatidyl-CMP levels were detected in the presence of lithium alone but were considerably more pronounced in the presence of both lithium and bradykinin. These results are consistent with the inhibitory action of lithium on key enzymes of the degradation pathway of inositol phosphates, resulting in a decrease in cellular inositol content and in an elevation in levels of phosphorylated inositols. Comparison of the mass of the inositol phosphates and diacylglycerol showed that the lithium-induced diacylglycerol levels were substantially greater than would be expected from phosphoinositide hydrolysis alone. One possible reason for the increase in the level of diacylglycerol through the action of lithium is the reversal of the reaction for the formation of phosphatidyl-CMP. The resulting phosphatidic acid would then need to be further dephosphorylated to diacylglycerol. The lithium-induced elevation of phosphatidyl-CMP was prevented by addition of myo-inositol (10-30 mM), suggesting that the increase in liponucleotide level was due to depletion of cellular inositol. Under the same conditions the elevated diacylglycerol concentration remained unchanged. Consequently, phosphatidyl-CMP is not its source, and diacylglycerol may arise through an effect of lithium on the degradation of phospholipids other than phosphoinositides. The action of phospholipase C or D on phosphatidylcholine is the most likely mechanism.
先前的研究表明,在神经母细胞瘤x胶质瘤杂交细胞系NG108-15中,锂能够诱导二酰基甘油水平升高。缓激肽的存在可增强这种作用。锂的另一个显著作用是脂核苷酸磷脂酰-CMP水平显著升高。单独存在锂时即可检测到磷脂酰-CMP水平升高,但在锂和缓激肽同时存在时更为明显。这些结果与锂对肌醇磷酸降解途径关键酶的抑制作用一致,导致细胞内肌醇含量降低,磷酸化肌醇水平升高。肌醇磷酸和二酰基甘油质量的比较表明,锂诱导的二酰基甘油水平显著高于仅由磷酸肌醇水解所预期的水平。锂作用导致二酰基甘油水平升高的一个可能原因是磷脂酰-CMP形成反应的逆转。生成的磷脂酸随后需要进一步去磷酸化生成二酰基甘油。添加肌醇(10 - 30 mM)可阻止锂诱导的磷脂酰-CMP升高,表明脂核苷酸水平升高是由于细胞内肌醇耗竭。在相同条件下,升高的二酰基甘油浓度保持不变。因此,磷脂酰-CMP不是其来源,二酰基甘油可能是锂对除磷酸肌醇以外的磷脂降解产生影响所致。磷脂酶C或D对磷脂酰胆碱的作用是最可能的机制。