首页> 美国卫生研究院文献>The Journal of Physiology >Prolongation of calcium action potentials by gamma-aminobutyric acid in primary sensory neurones of lamprey.
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Prolongation of calcium action potentials by gamma-aminobutyric acid in primary sensory neurones of lamprey.

机译:在七rey鳗的初级感觉神经元中γ-氨基丁酸会延长钙的动作电位。

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摘要

Intracellular recordings from primary mechanosensory neurones (dorsal cells) in the lamprey spinal cord were used to test the membrane effects of a variety of putative neuromodulatory agents. gamma-Aminobutyric acid (GABA) produced a dose-dependent increase in the duration of mixed Na-Ca or pure Ca action potentials in these cells. L-Glutamate and glycine produced minimal broadening of Ca action potentials. Acetylcholine, noradrenaline, serotonin, met-enkephalin, D-glutamate and dopamine had no effect. The pharmacology of GABA's action appeared to be complex. While the GABAA receptor antagonists, bicuculline, picrotoxin and curare, did not block GABA's effect, both the GABAA receptor agonist, muscimol, and the GABAB-receptor agonist, baclofen, occasionally broadened Ca action potentials in these cells. GABA had no effect on the resting potential, passive current-voltage (I-V) characteristics and pure Na action potential of dorsal cells, ruling out an action on passive membrane channels, transmitter-activated channels, or on those voltage-dependent channels activated during the Na action potential. Thus, GABA affected dorsal cells only when a significant Ca current was evident. GABA appeared not to increase the conductance of the Ca channels since its action was accompanied by an increase in input resistance, suggesting an inhibition of Ca-dependent conductance that normally acts to repolarize the membrane during a Ca action potential. An inhibitory effect of GABA on a Ca-dependent Cl conductance was ruled out in experiments where the Cl gradient was altered by removal of extracellular Cl without affecting GABA-induced Ca action potential prolongation. Dorsal cells have a prominent Ca-dependent K conductance (gK(Ca], and it is this conductance that GABA may inhibit. Consistent with this was the observation that the hyperpolarizing after-potential that follows Ca action potentials in dorsal cells, which reflects gK(Ca) in these cells and whose duration is normally increased when the Ca action potential duration increases, was not prolonged when the Ca action potential was broadened by GABA. Further, the failure of GABA to prolong Ba action potentials was consistent with this proposed mechanism of action, since Ba apparently does not activate gK(Ca) in these cells. Forskolin, a specific adenylate cyclase activator, caused broadening of Ca action potentials in lamprey dorsal cells comparable in magnitude to that of GABA. Thus, an increase in intracellular cyclic AMP is a candidate for the intracellular mediator of GABA's effect on these cells.
机译:在七rey鳗脊髓中,来自初级机械感觉神经元(背侧细胞)的细胞内记录被用于测试各种假定的神经调节剂的膜效应。 γ-氨基丁酸(GABA)在这些细胞中混合Na-Ca或纯Ca动作电位的持续时间产生了剂量依赖性的增加。 L-谷氨酸和甘氨酸产生的钙动作电位增幅最小。乙酰胆碱,去甲肾上腺素,5-羟色胺,脑啡肽,D-谷氨酸和多巴胺均无作用。 GABA的药理作用似乎很复杂。尽管GABAA受体拮抗剂双小分子,苦味毒素和箭毒不会阻止GABA的作用,但GABAA受体激动剂,麝香酚和GABAB受体激动剂巴氯芬有时会扩大这些细胞中的Ca动作电位。 GABA对背侧细胞的静息电位,无源电流-电压(IV)特性和纯Na作用电位没有影响,但对无源膜通道,发射器激活的通道或在激活过程中激活的那些电压依赖性通道没有作用Na动作电位。因此,只有当明显的Ca电流明显时,GABA才会影响背细胞。 GABA似乎没有增加Ca通道的电导,因为它的作用伴随着输入电阻的增加,这表明对Ca依赖性电导的抑制作用通常在Ca动作电位期间起到使膜重新极化的作用。在实验中排除了GABA对Ca依赖的Cl电导的抑制作用,其中通过去除细胞外Cl改变了Cl梯度,而不影响GABA诱导的Ca动作电位的延长。背侧细胞具有显着的Ca依赖性K电导(gK(Ca],GABA可能抑制了这种电导。与此相符的是,观察到背侧Ca动作电位跟随超极化后电位,反映了gK (Ca)在这些细胞中,并且当Ca动作电位持续时间增加时,其持续时间通常会增加;而当通过GABA扩展Ca动作电位时,其持续时间并未延长;此外,GABA未能延长Ba动作电位与该机制相一致的作用,因为Ba显然不能激活这些细胞中的gK(Ca)。福斯高林是一种特定的腺苷酸环化酶激活剂,导致七lamp鳗背细胞中Ca动作电位的增宽与GABA相当,因此,细胞内循环的增加AMP是GABA作用于这些细胞的细胞内介体的候选者。

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