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小鼠γ-氨基丁酸A型(GABAA)受体复合物上锌离子结合位点的鉴定:依赖于β亚基的第二个跨膜结构域。

Identification of a Zn2+ binding site on the murine GABAA receptor complex: dependence on the second transmembrane domain of beta subunits.

作者信息

Wooltorton J R, McDonald B J, Moss S J, Smart T G

机构信息

Department of Pharmacology, School of Pharmacy, London, UK.

出版信息

J Physiol. 1997 Dec 15;505 ( Pt 3)(Pt 3):633-40. doi: 10.1111/j.1469-7793.1997.633ba.x.

Abstract
  1. Whole-cell currents were recorded from Xenopus laevis oocytes expressing wild-type and mutant recombinant GABAA receptors to locate a binding site for Zn2+ ions in the beta 3 subunit. 2. The Cl(-)-selective current, spontaneously gated by beta 3 subunit homomers, was enhanced by pentobarbitone and inhibited by picrotoxinin. The potencies of these agents were minimally affected by mutating histidine (H) 292 to alanine (A) in the second transmembrane domain (TM2). 3. Zn2+ inhibited the beta 3 subunit-gated conductance (IC50, 0.31 microM); the inhibition was voltage insensitive. The H292A mutation in beta 3 subunits caused a 1000-fold reduction in Zn2+ potency (IC50, 307 microM). 4. GABA-activated responses recorded from heteromeric alpha 1 beta 3 GABAA receptors were also inhibited by Zn2+ (IC50, 0.11 microM). This inhibition was reduced by mutating H292A in the beta 3 subunit (IC50, 22.8 microM). 5. H292 in TM2 of the beta 3 subunit is an important determinant of a Zn2+ binding site on the GABAA receptor. Its location in the presumed ion channel lining suggests that Zn2+ can penetrate into an anion-selective channel and that the ionic selectivity filter and channel gate are located beyond H292.
摘要
  1. 从表达野生型和突变型重组GABAA受体的非洲爪蟾卵母细胞中记录全细胞电流,以确定β3亚基中Zn2+离子的结合位点。2. 由β3亚基同聚体自发门控的Cl(-)选择性电流,被戊巴比妥增强,被印防己毒素抑制。将第二跨膜结构域(TM2)中的组氨酸(H)292突变为丙氨酸(A)对这些药物的效力影响最小。3. Zn2+抑制β3亚基门控电导(IC50,0.31 microM);这种抑制对电压不敏感。β3亚基中的H292A突变导致Zn2+效力降低1000倍(IC50,307 microM)。4. 从异源α1β3 GABAA受体记录的GABA激活反应也被Zn2+抑制(IC50,0.11 microM)。通过在β3亚基中突变H292A,这种抑制作用减弱(IC50,22.8 microM)。5. β3亚基TM2中的H292是GABAA受体上Zn2+结合位点的重要决定因素。其在假定的离子通道内衬中的位置表明,Zn2+可以穿透到阴离子选择性通道中,并且离子选择性过滤器和通道门位于H292之外。

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