Hill Russell H, Svensson Erik, Dewael Yannick, Grillner Sten
Nobel Institute for Neurophysiology, Department of Neuroscience, Karolinska Institutet, S-17177 Stockholm, Sweden.
Eur J Neurosci. 2003 Dec;18(11):2919-24. doi: 10.1111/j.1460-9568.2003.03051.x.
5-HT is a potent modulator of locomotor activity in vertebrates. In the lamprey, 5-HT dramatically slows fictive swimming. At the neuronal level it reduces the postspike slow afterhyperpolarization (sAHP), which is due to apamin-sensitive Ca(2+)-dependent K+ channels (KCa). Indirect evidence in early experiments suggested that the sAHP reduction results from a direct action of 5-HT on KCa channels rather than an effect on the Ca(2+) entry during the action potential. In view of the characterization of different subtypes of Ca(2+) channels with very different properties, we now reinvestigate if there is a selective action of 5-HT on a Ca(2+) channel subtype in dissociated spinal neurons in culture. 5-HT reduced Ca(2+) currents from high voltage activated channels. N-type, but not L-type, Ca(2+) channel blockers abolished this 5-HT-induced reduction. It was also confirmed that 5-HT depresses Ca(2+) currents in neurons, including motoneurons, in the intact spinal cord. 8-OH-DPAT, a 5-HT1A receptor agonist, also inhibited Ca(2+) currents in dissociated neurons. After incubation in pertussis toxin, to block Gi/o proteins, 5-HT did not reduce Ca(2+) currents, further indicating that the effect is caused by an activation of 5-HT1A receptors. As N-type, but not L-type, Ca(2+) channels are known to mediate the activation of KCa channels and presynaptic transmitter release at lamprey synapses, the effects of 5-HT reported here can contribute to a reduction in both actions.
5-羟色胺(5-HT)是脊椎动物运动活动的强效调节剂。在七鳃鳗中,5-HT会显著减慢虚拟游泳速度。在神经元水平上,它会减少动作电位后的慢超极化(sAHP),这是由蜂毒明肽敏感的钙依赖性钾通道(KCa)引起的。早期实验的间接证据表明,sAHP的减少是5-HT对KCa通道直接作用的结果,而不是对动作电位期间钙内流的影响。鉴于具有非常不同特性的不同亚型钙通道的特征,我们现在重新研究5-HT在培养的离体脊髓神经元中是否对钙通道亚型有选择性作用。5-HT减少了来自高电压激活通道的钙电流。N型而非L型钙通道阻滞剂消除了这种5-HT诱导的减少。还证实5-HT会抑制完整脊髓中包括运动神经元在内的神经元中的钙电流。5-HT1A受体激动剂8-OH-DPAT也抑制离体神经元中的钙电流。在用百日咳毒素孵育以阻断Gi/o蛋白后,5-HT不会减少钙电流,这进一步表明该作用是由5-HT1A受体的激活引起的。由于已知N型而非L型钙通道介导七鳃鳗突触处KCa通道的激活和突触前递质释放,此处报道的5-HT的作用可能有助于减少这两种作用。