Bixby J L, Spitzer N C
J Neurosci. 1983 May;3(5):1014-8. doi: 10.1523/JNEUROSCI.03-05-01014.1983.
Rohon-Beard neurons of the Xenopus spinal cord develop somatic Ca++-dependent action potentials at early embryonic stages. Because many Ca++-dependent events are blocked or reduced by enkephalin in other neuronal systems, we tested the effect of met-enkephalin on the Ca++ spikes of Rohon-Beard cells. Our results indicate that met-enkephalin, which has no effect on the resting membrane potential or conductance in these cells, reversibly and specifically shortens their Ca++ action potentials, probably by decreasing the Ca++ conductance. Enkephalin has a similar effect on Xenopus dorsal root ganglion cells in vivo. Examination of Rohon-Beard cells at various stages of development shows that enkephalin shortens Ca++ spikes from the earliest times that the spikes appear (approximately 21 hr after fertilization) to the latest times they are detectable (7 to 9 days). This very early response suggests either that enkephalin binds directly to the Ca++ channels or that an "enkephalin receptor" is among the earliest neuronal phenotypes to appear in these cells.
非洲爪蟾脊髓中的罗霍恩 - 比尔兹神经元在胚胎早期阶段就发育出躯体钙依赖性动作电位。由于在其他神经元系统中,许多钙依赖性事件会被脑啡肽阻断或减弱,因此我们测试了甲硫氨酸脑啡肽对罗霍恩 - 比尔兹细胞钙峰的影响。我们的结果表明,甲硫氨酸脑啡肽对这些细胞的静息膜电位或电导没有影响,但它可能通过降低钙电导,可逆且特异性地缩短其钙动作电位。脑啡肽在体内对非洲爪蟾背根神经节细胞也有类似作用。对处于不同发育阶段的罗霍恩 - 比尔兹细胞进行检测发现,从钙峰最早出现(受精后约21小时)到最晚可检测到(7至9天)的各个时期,脑啡肽都会缩短钙峰。这种非常早期的反应表明,要么脑啡肽直接与钙通道结合,要么“脑啡肽受体”是这些细胞中最早出现的神经元表型之一。