Tapia R, Sitges M, Morales E
Brain Res. 1985 Dec 30;361(1-2):373-82. doi: 10.1016/0006-8993(85)91307-1.
The mechanism of the Ca2+-dependent stimulation of neurotransmitter release by 4-aminopyridine in synaptosomes was studied. The stimulation of gamma-[3H]aminobutyric acid and [3H]acetylcholine release by 4-aminopyridine was not significantly affected either by tetrodotoxin or by the absence of Na+ in the medium, whereas the toxin notably inhibited the release of both transmitters induced by veratridine. On the other hand, the release of labeled gamma-aminobutyric acid induced by 4-aminopyridine was inhibited by both La3+ and ruthenium red, two blockers of Ca2+ transport in synaptosomes. In other experiments, 4-aminopyridine had only a slight stimulatory effect, if any, on the influx of 45Ca2+ into synaptosomes, under both resting and K+-depolarizing conditions. Ruthenium red inhibited the stimulation by K+ of the 45Ca2+ uptake, and 4-aminopyridine did not antagonize this inhibition. We conclude that the transmitter-releasing action of 4-aminopyridine in synaptosomes does not involve an excitatory effect on the membrane which may result in the opening of voltage-sensitive Na+ channels. 4-Aminopyridine does not seem to act either by enhancing Ca2+ entry into the synaptosomes. It is proposed that 4-aminopyridine facilitates the coupling between Ca2+ binding and transmitter secretion at the presynaptic membrane.
研究了4-氨基吡啶在突触体中对神经递质释放的Ca2+依赖性刺激机制。4-氨基吡啶对γ-[3H]氨基丁酸和[3H]乙酰胆碱释放的刺激作用,无论是被河豚毒素还是培养基中无Na+,均未受到显著影响,而该毒素显著抑制了藜芦碱诱导的两种递质的释放。另一方面,4-氨基吡啶诱导的标记γ-氨基丁酸的释放受到La3+和钌红的抑制,这两种物质是突触体中Ca2+转运的阻滞剂。在其他实验中,无论在静息还是K+去极化条件下,4-氨基吡啶对45Ca2+流入突触体的影响(如果有的话)都很小。钌红抑制了K+对45Ca2+摄取的刺激作用,且4-氨基吡啶不能拮抗这种抑制作用。我们得出结论,4-氨基吡啶在突触体中的递质释放作用并不涉及对膜的兴奋性作用,而这种作用可能导致电压敏感性Na+通道的开放。4-氨基吡啶似乎也不是通过增强Ca2+进入突触体来发挥作用。有人提出,4-氨基吡啶促进了突触前膜上Ca2+结合与递质分泌之间的偶联。