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精氨酸多胺对培养神经元记录的电压和配体激活的全细胞电流的作用。

Actions of arginine polyamine on voltage and ligand-activated whole cell currents recorded from cultured neurones.

作者信息

Scott R H, Sweeney M I, Kobrinsky E M, Pearson H A, Timms G H, Pullar I A, Wedley S, Dolphin A C

机构信息

Department of Physiology, St Georges Hospital Medical School, London.

出版信息

Br J Pharmacol. 1992 May;106(1):199-207. doi: 10.1111/j.1476-5381.1992.tb14315.x.

Abstract
  1. Toxins from invertebrates have proved useful tools for investigation of the properties of ion channels. In this study we describe the actions of arginine polyamine which is believed to be a close analogue of FTX, a polyamine isolated from the American funnel web spider, Agelenopsis aperta. 2. Voltage-activated Ca2+ currents and Ca(2+)-dependent Cl- currents recorded from rat cultured dorsal root ganglion neurones were reversibly inhibited by arginine polyamine (AP; 0.001 to 100 microM). Low voltage-activated T-type Ca2+ currents were significantly more sensitive to AP than high voltage-activated Ca2+ currents. The IC50 values for the actions of AP on low and high voltage-activated Ca2+ currents were 10 nM and 3 microM respectively. AP was equally effective in inhibiting high voltage-activated currents carried by Ba2+, Sr2+ or Ca2+. However, AP-induced inhibition of Ca2+ currents was attenuated by increasing the extracellular Ca2+ concentration from 2 mM to 10 mM. 3. The actions of AP on a Ca(2+)-independent K+ current were more complex, 1 microM AP enhanced this current but 10 microM AP had a dual action, initially enhancing but then inhibiting the K+ current. 4. gamma-Aminobutyric acid-activated Cl- currents were also reversibly inhibited by 1 to 10 microM AP. In contrast N-methyl-D-aspartate currents recorded from rat cultured cerebellar neurones were greatly enhanced by 10 microM AP. 5. We conclude that at a concentration of 10 nM, AP is a selective inhibitor of low threshold T-type voltage-activated Ca2+ currents. However, at higher concentrations 1-10 microM AP interacts with ion channels or other membrane constituents to produce a variety of actions on both voltage and ligand gated ion channels.
摘要
  1. 事实证明,来自无脊椎动物的毒素是研究离子通道特性的有用工具。在本研究中,我们描述了精氨酸多胺的作用,它被认为是从美国漏斗网蜘蛛(Agelenopsis aperta)分离出的多胺毒素FTX的类似物。2. 从大鼠培养的背根神经节神经元记录到的电压激活型Ca2+电流和Ca(2+)依赖性Cl-电流可被精氨酸多胺(AP;0.001至100 microM)可逆性抑制。低电压激活的T型Ca2+电流对AP的敏感性明显高于高电压激活的Ca2+电流。AP对低电压和高电压激活的Ca2+电流作用的IC50值分别为10 nM和3 microM。AP对由Ba2+、Sr2+或Ca2+携带的高电压激活电流具有同等效力。然而,将细胞外Ca2+浓度从2 mM增加到10 mM可减弱AP诱导的Ca2+电流抑制作用。3. AP对非Ca(2+)依赖性K+电流的作用更为复杂,1 microM AP增强了该电流,但10 microM AP具有双重作用,最初增强随后抑制K+电流。4. 1至10 microM AP也可可逆性抑制γ-氨基丁酸激活的Cl-电流。相比之下,从大鼠培养的小脑神经元记录到的N-甲基-D-天冬氨酸电流被10 microM AP显著增强。5. 我们得出结论,浓度为10 nM时,AP是低阈值T型电压激活Ca2+电流的选择性抑制剂。然而,在较高浓度1-10 microM时,AP与离子通道或其他膜成分相互作用,对电压门控和配体门控离子通道产生多种作用。

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