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在多刺龙虾神经肌肉制剂上一种不被苦味毒阻断的γ-氨基丁酸激活的氯电导。

A GABA-activated chloride-conductance not blocked by picrotoxin on spiny lobster neuromuscular preparations.

作者信息

Albert J, Lingle C J, Marder E, O'Neil M B

出版信息

Br J Pharmacol. 1986 Apr;87(4):771-9. doi: 10.1111/j.1476-5381.1986.tb14596.x.

Abstract

Conductance increases to gamma-aminobutyric acid (GABA) were recorded in the gm6b and opener muscle of the spiny lobsters, Panulirus interruptus and P. argus. GABA-evoked responses were insensitive to picrotoxin at concentrations as high as 5 X 10(-5) M. Some blockade by picrotoxin was observed at higher concentrations. In normal physiological saline, the reversal potential of the Panulirus GABA-induced response was near the resting potential. The reversal potential was unaffected by reductions in sodium and calcium. Reduction of chloride by 50% resulted in a greater than 10 mV shift in the reversal potential of the GABA-induced response. Muscimol was able to mimic the action of GABA while baclofen was without effect. Bicuculline was a weak blocker. Avermectin B1a irreversibly increased the chloride permeability of the gm6b membrane. This conductance increase was blocked by picrotoxin over a range of concentrations similar to those required for blockade of the GABA-induced response. GABA-induced responses of the gm6b muscle of Homarus americanus were blocked almost completely by picrotoxin 10(-6) M. Sensitivity to picrotoxin is not invariably associated with GABA-activated chloride-mediated conductance increases. It is suggested that alteration in the binding-site for picrotoxin on the GABA-activated chloride-ion channel does not change other functional characteristics of the GABA-induced response.

摘要

在中断岩龙虾(Panulirus interruptus)和豹纹龙虾(P. argus)的gm6b和开肌中记录到对γ-氨基丁酸(GABA)的电导增加。GABA诱发的反应对浓度高达5×10⁻⁵ M的苦味毒不敏感。在更高浓度下观察到苦味毒有一定的阻断作用。在正常生理盐水中,岩龙虾GABA诱导反应的反转电位接近静息电位。反转电位不受钠和钙减少的影响。氯化物减少50%导致GABA诱导反应的反转电位发生大于10 mV的偏移。蝇蕈醇能够模拟GABA的作用,而巴氯芬则无效。荷包牡丹碱是一种弱阻断剂。阿维菌素B1a不可逆地增加了gm6b膜的氯通透性。这种电导增加在一系列浓度范围内被苦味毒阻断,其浓度范围与阻断GABA诱导反应所需的浓度相似。10⁻⁶ M的苦味毒几乎完全阻断了美洲螯龙虾(Homarus americanus)gm6b肌肉的GABA诱导反应。对苦味毒的敏感性并非总是与GABA激活的氯介导的电导增加相关。有人认为,苦味毒在GABA激活的氯离子通道上结合位点的改变不会改变GABA诱导反应的其他功能特性。

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