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首页> 外文期刊>The Journal of Physiology >Cyclothiazide: a subunit-specific inhibitor of GABAC receptors.
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Cyclothiazide: a subunit-specific inhibitor of GABAC receptors.

机译:Cyclothiazide:GABAC受体的亚基特异性抑制剂。

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We tested the effects of cyclothiazide (CTZ), an agent used to block desensitization of AMPA-type glutamate receptors, on heterologously expressed GABA(C) receptors formed by homomeric rho subunits. CTZ inhibition of GABA(C) receptors was subunit specific; it produced a dose-dependent reduction of the GABA-elicited current on homomeric rho2 receptors with an IC(50) of about 12 microm, but had no significant effect on homomeric rho1 receptors. This differential sensitivity was attributable to a single amino acid located on the second transmembrane domain of the rho subunits. Mutating the residue at this position from serine to proline on the rho2 subunit eliminated CTZ sensitivity, whereas switching proline to serine on the rho1 subunit made the receptor CTZ sensitive. The inhibitory properties of CTZ were consistent with its action as a channel blocker on the receptors formed by rho2 subunits. The effect showed a small degree of voltage dependence, and was due mainly to a non-competitive mechanism thatreduced the maximum response elicited by GABA. In addition, the prominent membrane current rebound when co-application of GABA and CTZ was terminated suggests that the binding site for CTZ on the GABA(C) receptor is distinct from that for GABA, and that CTZ acts as a non-competitive antagonist on the GABA(C) receptor. CTZ inhibited the open channel of the GABA(C) receptor with a time constant of about 0.4 s, but the kinetics were approximately 10-fold slower when GABA is absent. The ability of CTZ to interact with various types of neurotransmitter receptors indicates that the drug has multiple actions in the CNS.
机译:我们测试了环噻嗪(CTZ)(一种用于阻止AMPA型谷氨酸受体脱敏的试剂)对由同源rho亚基形成的异源表达GABA(C)受体的影响。 CTZ对GABA(C)受体的抑制作用是亚基特异性的。它对同型rho2受体产生GABA引起的电流的剂量依赖性降低,IC(50)约为12微米,但对同型rho1受体没有明显影响。该差异敏感性归因于位于rho亚基的第二跨膜结构域上的单个氨基酸。将rho2亚基上该位置的残基从丝氨酸突变为脯氨酸消除了CTZ敏感性,而将rho1亚基上的脯氨酸转换为丝氨酸使受体CTZ敏感。 CTZ的抑制特性与其作为rho2亚基形成的受体的通道阻滞剂的作用一致。该效应显示出很小的电压依赖性,并且主要是由于非竞争性机制降低了GABA引起的最大响应。此外,终止GABA和CTZ共同应用时,明显的膜电流回弹表明,GABA(C)受体上CTZ的结合位点与GABA上的结合位点不同,并且CTZ充当了非竞争性拮抗剂GABA(C)受体。 CTZ以约0.4 s的时间常数抑制GABA(C)受体的开放通道,但缺少GABA时动力学降低了约10倍。 CTZ与各种类型的神经递质受体相互作用的能力表明该药物在CNS中具有多种作用。

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