Draguhn A, Verdorn T A, Ewert M, Seeburg P H, Sakmann B
Max-Planck-Institut für medizinische Forschung Abteilung Zellphysiologie, Heidelberg, Federal Republic of Germany.
Neuron. 1990 Dec;5(6):781-8. doi: 10.1016/0896-6273(90)90337-f.
gamma-Aminobutyric acid receptor (GABAAR) channels in different neurons display heterogeneous functional properties. Molecular cloning revealed a large number of GABAAR subunits that assemble into GABAAR subtypes with different functional properties, suggesting that the subunit combination determines the functional properties of the receptor. In this study, the subunit composition of GABAARs is related to a functional distinction between Zn2(+)-sensitive and Zn2(+)-insensitive receptor subtypes. GABAARs reconstituted in transiently transfected fibroblasts from combinations of cDNAs encoding alpha and beta subunits are potently blocked by Zn2+. The presence of a gamma subunit in any combination with the other subunits leads to the formation of GABAARs that are almost insensitive to Zn2+. These data provide a structural correlate to the functional heterogeneity of the action of Zn2+ on GABAARs in native membranes and show that Zn2+ insensitivity of GABA-activated currents indicates the presence of a gamma-subunit in the assembled GABAAR channel.
不同神经元中的γ-氨基丁酸受体(GABAAR)通道表现出异质性的功能特性。分子克隆揭示了大量的GABAAR亚基,它们组装成具有不同功能特性的GABAAR亚型,这表明亚基组合决定了受体的功能特性。在本研究中,GABAAR的亚基组成与锌离子敏感和锌离子不敏感受体亚型之间的功能差异有关。从编码α和β亚基的cDNA组合在瞬时转染的成纤维细胞中重组的GABAAR被锌离子强烈阻断。γ亚基与其他亚基的任何组合都会导致形成对锌离子几乎不敏感的GABAAR。这些数据为锌离子对天然膜中GABAAR作用的功能异质性提供了结构关联,并表明GABA激活电流对锌离子不敏感表明组装的GABAAR通道中存在γ亚基。