Fisher J L, Macdonald R L
Department of Neurology, University of Michigan, Ann Arbor, Michigan 48104-1687, USA.
J Neurosci. 1998 Apr 15;18(8):2944-53. doi: 10.1523/JNEUROSCI.18-08-02944.1998.
Sensitivity of GABAA receptors (GABARs) to inhibition by zinc and other divalent cations is influenced by the alpha subunit subtype composition of the receptor. For example, alpha6beta3gamma2L receptors are more sensitive to inhibition by zinc than alpha1beta3gamma2L receptors. We examined the role of a His residue located in the M2-M3 extracellular domain (rat alpha6 H273) in the enhanced zinc sensitivity conferred by the alpha6 subtype. The alpha1 subtype contains an Asn (N274) residue in the equivalent location. GABA-activated whole-cell currents were obtained from L929 fibroblasts after transient transfection with expression vectors containing GABAA receptor cDNAs. Mutation of alpha1 (alpha1(N274H)) or alpha6 (alpha6(H273N)) subtypes did not alter the GABA EC50 of alphabeta3gamma2L receptors. alpha1(N274H)beta3gamma2L receptor currents were as sensitive to zinc as alpha6beta3gamma2L receptor currents, although alpha6(H273N)beta3gamma2L receptor currents had the reduced zinc sensitivity of alpha1beta3gamma2L receptor currents. We also examined the activity of other inhibitory divalent cations with varying alpha subtype dependence: nickel, cadmium, and copper. alpha6beta3gamma2L receptor currents were more sensitive to nickel, equally sensitive to cadmium, and less sensitive to copper than alpha1beta3gamma2L receptor currents. Studies with alpha1 and alpha6 chimeric subunits indicated that the structural dependencies of the activity of some of these cations were different from zinc. Compared with alpha6beta3gamma2L receptor currents, alpha6(H273N)beta3gamma2L receptor currents had reduced sensitivity to cadmium and nickel, but the sensitivity to copper was unchanged. Compared with alpha1beta3gamma2L receptor currents, alpha1(N274H)beta3gamma2L receptor currents had increased sensitivity to nickel, but the sensitivity to cadmium and copper was unchanged. These findings indicate that H273 of the alpha6 subtype plays an important role in determining the sensitivity of recombinant GABARs to the divalent cations zinc, cadmium, and nickel, but not to copper. Our results also suggest that the extracellular N-terminal domain of the alpha1 subunit contributes to a regulatory site(s) for divalent cations, conferring high sensitivity to inhibition by copper and cadmium.
γ-氨基丁酸A型受体(GABARs)对锌和其他二价阳离子抑制作用的敏感性受受体α亚基亚型组成的影响。例如,α6β3γ2L受体比α1β3γ2L受体对锌抑制作用更敏感。我们研究了位于M2-M3细胞外结构域的一个组氨酸残基(大鼠α6 H273)在α6亚型赋予的增强锌敏感性中的作用。α1亚型在等效位置含有一个天冬酰胺(N274)残基。用含有GABAA受体cDNA的表达载体瞬时转染L929成纤维细胞后,获得GABA激活的全细胞电流。α1(α1(N274H))或α6(α6(H273N))亚型的突变未改变αβ3γ2L受体的GABA EC50。α1(N274H)β3γ2L受体电流对锌的敏感性与α6β3γ2L受体电流相同,尽管α6(H273N)β3γ2L受体电流对锌的敏感性降低至α1β3γ2L受体电流的水平。我们还研究了其他具有不同α亚型依赖性的抑制性二价阳离子的活性:镍、镉和铜。α6β3γ2L受体电流比α1β3γ2L受体电流对镍更敏感,对镉的敏感性相同,对铜的敏感性更低。对α1和α6嵌合亚基的研究表明,其中一些阳离子活性的结构依赖性与锌不同。与α6β3γ2L受体电流相比,α6(H273N)β3γ2L受体电流对镉和镍的敏感性降低,但对铜的敏感性不变。与α1β3γ2L受体电流相比,α1(N274H)β3γ2L受体电流对镍的敏感性增加,但对镉和铜的敏感性不变。这些发现表明,α6亚型的H273在决定重组GABARs对二价阳离子锌、镉和镍的敏感性方面起重要作用,但对铜不起作用。我们的结果还表明,α1亚基的细胞外N端结构域有助于形成二价阳离子的调节位点,赋予对铜和镉抑制作用的高敏感性。