Morell P, Ousley A H
Dept. of Biochemistry and Biophysics, University of North Carolina, Chapel Hill 27599.
Neurochem Res. 1994 Aug;19(8):967-74. doi: 10.1007/BF00968706.
The apparent half life for metabolic turnover of glycerophospholipids in the myelin sheath, as determined by measuring the rate of loss of label in a myelin glycerophospholipid following radioactive precursor injection, varies with the radioactive precursor used, age of animal, and time after injection during which metabolic turnover is studied. Experimental strategies for resolving apparent inconsistencies consequent to these variables are discussed. Illustrative data concerning turnover of phosphatidylcholine (PC) in myelin of rat brain are presented. PC of the myelin membrane exhibits heterogeneity with respect to metabolic turnover rates. There are at least two metabolic pools of PC in myelin, one with a half life of the order of days, and another with a half life of the order of weeks. To a significant extent biphasic turnover is due to differential turnover of individual molecular species (which differ in acyl chain composition). The two predominant molecular species of myelin PC turnover at very different rates (16:0, 18:1 PC turning over several times more rapidly than 18:0, 18:1 PC). Therefore, within the same membrane, individual molecular species of a phospholipid class are metabolized at different rates. Possible mechanisms for differential turnover of molecular species are discussed, as are other factors that may contribute to a multiphasic turnover of glycerophospholipids.
通过在注射放射性前体后测量髓鞘甘油磷脂中标记物的损失速率来确定,髓鞘中甘油磷脂代谢周转的表观半衰期会因所使用的放射性前体、动物年龄以及研究代谢周转的注射后时间的不同而有所变化。本文讨论了用于解决这些变量导致的明显不一致性的实验策略。文中给出了有关大鼠脑髓鞘中磷脂酰胆碱(PC)周转的说明性数据。髓鞘膜中的PC在代谢周转率方面表现出异质性。髓鞘中至少存在两个PC代谢池,一个半衰期约为几天,另一个半衰期约为几周。在很大程度上,双相周转是由于各个分子种类(酰基链组成不同)的周转差异所致。髓鞘PC的两种主要分子种类的周转速率非常不同(16:0、18:1 PC的周转速度比18:0、18:1 PC快几倍)。因此,在同一膜内,磷脂类的各个分子种类以不同的速率进行代谢。文中讨论了分子种类差异周转的可能机制,以及可能导致甘油磷脂多相周转的其他因素。