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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Electrophysiological evidence for the coexistence of alpha1 and alpha6 subunits in a single functional GABA(A) receptor.
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Electrophysiological evidence for the coexistence of alpha1 and alpha6 subunits in a single functional GABA(A) receptor.

机译:在单个功能性GABA(A)受体中alpha1和alpha6亚基共存的电生理证据。

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The subunit combinations alpha1beta2gamma2, alpha6beta2gamma2, and alpha1alpha6beta2gamma2 of the GABA(A) receptor were functionally expressed in Xenopus oocytes. The properties of the resulting ion currents were characterized by using electrophysiological techniques. The concentration-response curve of the channel agonist GABA for alpha1alpha6beta2gamma2 showed a single apparent component characterized by an EC(50) of 107 +/- 26 microM (n = 4). It was different from the one for alpha1beta2gamma2, which had an EC(50) of 41 +/- 9 microM (n = 4), that for alpha6beta2gamma2, with an EC(50) of 6.7 +/- 1.9 microM (n = 5), and those for alpha1beta2 and alpha1alpha6beta2. There was no appreciable functional expression of alpha6beta2. Allosteric responses of alpha1alpha6beta2gamma2 to diazepam were intermediate to those of alpha1beta2gamma2 and alpha6beta2gamma2, and allosteric responses to flumazenil were comparable to the ones for alpha1beta2gamma2. The inhibition by furosemide of the currents elicited by GABA in alpha1alpha6beta2gamma2 [IC(50) = 298 +/- 116 microM (n = 7), assuming only one component] was not identical with inhibition of alpha6beta2gamma2 (IC(50) = 38 +/- 2 microM, n = 4), alpha1beta2gamma2 (IC(50) = 5,610 +/- 910 microM, n = 5), or a mixture of these components (assuming two components). These findings indicate unambiguously the formation of functional GABA(A) receptors containing two different alpha subunits, alpha1 and alpha6, with properties different from those of alpha1beta2gamma2 and alpha6beta2gamma2. Furthermore, we provide evidence for the facts that in the Xenopus oocyte (a) the formation of the different receptor types depends on the relative abundance of cRNAs coding for the different receptor subunits and (b) that functional dual subunit combinations alphabeta do not form in the presence of cRNA coding for the gamma subunit.
机译:GABA(A)受体的亚基组合alpha1beta2gamma2,alpha6beta2gamma2和alpha1alpha6beta2gamma2在非洲爪蟾卵母细胞中功能性表达。通过使用电生理技术来表征所得离子电流的性质。通道激动剂GABA对alpha1alpha6beta2gamma2的浓度-响应曲线显示了一个单一的表观成分,其EC(50)为107 +/- 26 microM(n = 4)。它不同于alpha1beta2gamma2的EC(50)为41 +/- 9 microM(n = 4),alpha6beta2gamma2的EC(50)为6.7 +/- 1.9 microM(n = 5) ),以及alpha1beta2和alpha1alpha6beta2的那些。没有明显的功能表达α6beta2。 alpha1alpha6beta2gamma2对地西epa的变构反应中等于alpha1beta2gamma2和alpha6beta2gamma2,对氟马西尼的变构反应与alpha1beta2gamma2相当。速尿对α1alpha6beta2gamma2[IC(50)= 298 +/- 116 microM(n = 7)(假设只有一种成分)中GABA引发的电流的抑制作用)与对α6beta2gamma2的抑制作用不相同(IC(50)= 38 + /-2 microM,n = 4),alpha1beta2gamma2(IC(50)= 5,610 +/- 910 microM,n = 5)或这些组件的混合物(假设有两个组件)。这些发现明确表明,含有两个不同的α亚基α1和α6的功能性GABA(A)受体的形成与α1beta2gamma2和α6beta2gamma2的性质不同。此外,我们提供以下事实的证据:在非洲爪蟾卵母细胞中(a)不同受体类型的形成取决于编码不同受体亚基的cRNA的相对丰度,以及(b)在字母表中不会形成功能性双亚基组合编码γ亚基的cRNA的存在。

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