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A study of the mechanism of Ca2+ current inhibition produced by serotonin in rat dorsal raphe neurons

机译:血清素对大鼠背沟神经元产生的Ca2 +电流抑制作用机理的研究

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摘要

Calcium currents and their modulation by 5-HT were studied using both whole-cell and single-channel patch-clamp techniques in acutely isolated adult rat dorsal raphe neurons. Evidence for three types of Ca channels (T, N, L) was obtained in both whole-cell and single-channel experiments. Approximately 4% of the total high-threshold Ca current (L- type) was sensitive to dihydropyridines (DHPs) while approximately 40% of the Ca current (N-type) was sensitive to omega-conotoxin (omega- CgTx). About 56% of the whole-cell current was insensitive to either DHPs or omega-CgTx and may thus represent a different kind of Ca current. 5-HT reduced raphe neuron Ca currents by approximately 50%, while slowing activation. 5-HT inhibited both omega-CgTx-sensitive and - insensitive Ca current. Inhibition by 5-HT was voltage dependent; prepulses to +80 mV lasting for 20 msec almost completely abolished the 5-HT-mediated inhibition. The voltage dependence of the response to 5- HT suggested that trains of action potentials might overcome the inhibition due to 5-HT. Trains of brief depolarizations were used to simulate action potentials; only about 5% of the 5-HT-induced inhibition was relieved by the trains. These results suggest that while large depolarizations could restore the Ca current inhibited by 5-HT, physiological stimuli, such as trains of action potentials, could not. The action of 5-HT was made irreversible by inclusion of GTP-gamma-S in the patch pipette, suggesting a G-protein mediation of the response to 5-HT.(ABSTRACT TRUNCATED AT 250 WORDS)
机译:使用全细胞和单通道膜片钳技术在急性分离的成年大鼠背沟纹神经元中研究了钙电流及其对5-HT的调节作用。在全细胞和单通道实验中均获得了三种类型的Ca通道(T,N,L)的证据。高阈值Ca电流(L型)中约4%对二氢吡啶(DHP)敏感,而Ca电流(N型)中约40%对ω-芋螺毒素(omega-CgTx)敏感。大约56%的全细胞电流对DHP或omega-CgTx均不敏感,因此可能代表了不同类型的Ca电流。 5-HT降低了沟纹神经元Ca电流约50%,同时减慢了激活速度。 5-HT抑制omega-CgTx敏感和不敏感的Ca电流。 5-HT的抑制作用取决于电压。 +80 mV的预脉冲持续20毫秒几乎完全消除了5-HT介导的抑制作用。对5-HT的响应的电压依赖性表明,一系列动作电位可能克服了由于5-HT引起的抑制。一系列简短的去极化被用来模拟动作电位。火车仅缓解了约5%的5-HT诱导的抑制作用。这些结果表明,虽然大的去极化可以恢复被5-HT抑制的Ca电流,但是生理刺激(如一系列动作电位)却不能。通过在贴片移液器中加入GTP-γ-S使得5-HT的作用不可逆,表明G蛋白介导了对5-HT的应答。(摘要截断为250字)

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