Murray N, Steck A J
J Neurochem. 1984 Jul;43(1):243-8. doi: 10.1111/j.1471-4159.1984.tb06702.x.
The influence of action potential conduction in myelinated axons on the state of phosphorylation of myelin basic protein was studied in rat optic nerve incubated in vitro. For this purpose we used a technique that permits continuous recording of the responses of nerves to electrical stimulation together with the "back-phosphorylation" assay. Our results indicate that action potential conduction, but not electrical stimulation, increased the state of phosphorylation of myelin basic protein. The increment in basic protein phosphorylation was related to the number of impulses conducted, up to a maximal change which occurred after 12 X 10(3) impulses. Also, the effect of action potential conduction was reversible, since the state of myelin basic protein phosphorylation returned to control levels within 5 min of stopping stimulation. These findings raise the interesting possibility that myelin basic protein phosphorylation plays a role in some dynamic function of myelin, perhaps related to ion transport or to the process of recovery of ionic gradients.
在体外培养的大鼠视神经中,研究了有髓鞘轴突中动作电位传导对髓鞘碱性蛋白磷酸化状态的影响。为此,我们采用了一种技术,该技术允许连续记录神经对电刺激的反应以及“反向磷酸化”测定。我们的结果表明,动作电位传导而非电刺激增加了髓鞘碱性蛋白的磷酸化状态。碱性蛋白磷酸化的增加与传导的冲动数量有关,直至在12×10³次冲动后出现最大变化。此外,动作电位传导的作用是可逆的,因为在停止刺激后5分钟内,髓鞘碱性蛋白的磷酸化状态恢复到对照水平。这些发现提出了一个有趣的可能性,即髓鞘碱性蛋白磷酸化在髓鞘的某些动态功能中起作用,可能与离子转运或离子梯度恢复过程有关。