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γ-氨基丁酸(GABA)和各种变构配体对TBPS与克隆的大鼠GABA(A)受体亚型结合的影响。

Effects of GABA and various allosteric ligands on TBPS binding to cloned rat GABA(A) receptor subtypes.

作者信息

Im W B, Pregenzer J F, Thomsen D R

机构信息

Upjohn Company, Kalamazoo, Michigan 49001.

出版信息

Br J Pharmacol. 1994 Aug;112(4):1025-30. doi: 10.1111/j.1476-5381.1994.tb13185.x.

Abstract
  1. [35S]t-butylbicyclophosphorothionate (TBPS) is a high affinity ligand for the picrotoxin site of GABA(A) receptors. Here we examined TBPS binding to the cloned receptors made of alpha 1, alpha 3 or alpha 6 in combination with beta 2 or beta 2 and gamma 2 subunits, in the presence of GABA and several allosteric ligands (diazepam, methyl 6,7-dimethoxy-4-methyl-beta-carboline-3-carboxylate (DMCM), 3 alpha,21-dihydroxy-5 alpha-pregnan-20-one (5 alpha-THDOC), pentobarbitone and Zn). The cloned receptors were transiently expressed in SF-9 insect cells by infecting with recombinant baculoviruses. 2. In alpha beta subtypes, GABA at nanomolar concentrations enhanced TBPS binding but inhibited binding at micromolar concentrations. Half maximal GABA concentrations for enhancement or inhibition of TBPS binding were correlated with high and low affinity GABA binding sites, respectively, in individual subtypes. The maximal enhancement of binding also varied according to the alpha isoform (alpha 3 beta 2 >> alpha 1 beta 2). In alpha beta gamma subtypes, TBPS binding was unaffected by GABA at nanomolar concentrations, but was inhibited by GABA at micromolar concentrations. Addition of gamma 2 thus appeared to abolish conformational coupling between high affinity GABA sites and TBPS sites, and also altered low affinity GABA sites; in particular, the half maximal GABA concentration for inhibition of TBPS binding changed from > 100 (alpha 6 beta 2) to 1 microM (alpha 6 beta 2 gamma 2). 3. Allosteric ligands also altered TBPS binding to sensitive GABA(A) receptor subtypes. For instance,diazepam only in the alpha 1 beta2 gamma 2 and alpha 3 beta 2 gamma 2 subtypes, and 5 alpha-THDOC in all the subtypes enhanced TBPS binding in the absence of GABA, and intensified the inhibitory effect of GABA. Pentobarbitone exhibited only the latter effect in all the subtypes we examined.4. DMCM and Zn, inhibitors of GABA-induced Cl currents in alpha beta gamma and alpha beta subtypes, respectively,produced opposite effects to agonists, decreasing TBPS binding in the absence of GABA and attenuating(or eliminating in the case of Zn) the inhibitory effect of GABA on TBPS binding.5. These results show that GABA binding sites and their conformational coupling with TBPS sites are differentially affected by the alpha isoform (particularly alpha 6 as compared to alpha l or alpha 3) and by quaternary interactions involving the gamma 2 subunit. Moreover, changes in TBPS binding by allosteric ligands include not only direct (allosteric) effects on TBPS sites but also indirect effects via GABA sites, and are consistent with their known subtype selectivity and functionality from previous studies.
摘要
  1. [35S]叔丁基双环硫代磷酸酯(TBPS)是γ-氨基丁酸A(GABA(A))受体印防己毒素位点的高亲和力配体。在此,我们检测了在γ-氨基丁酸(GABA)以及几种变构配体(地西泮、6,7-二甲氧基-4-甲基-β-咔啉-3-羧酸甲酯(DMCM)、3α,21-二羟基-5α-孕烷-20-酮(5α-THDOC)、戊巴比妥和锌)存在的情况下,TBPS与由α1、α3或α6与β2或β2和γ2亚基组合构成的克隆受体的结合情况。通过用重组杆状病毒感染,使克隆受体在SF-9昆虫细胞中瞬时表达。2. 在αβ亚型中,纳摩尔浓度的GABA增强TBPS结合,但微摩尔浓度的GABA则抑制结合。增强或抑制TBPS结合的半数最大GABA浓度分别与各个亚型中的高亲和力和低亲和力GABA结合位点相关。结合的最大增强程度也因α亚型(α3β2 >> α1β2)而异。在αβγ亚型中,纳摩尔浓度的GABA对TBPS结合无影响,但微摩尔浓度的GABA则抑制结合。因此,γ2亚基的添加似乎消除了高亲和力GABA位点与TBPS位点之间的构象偶联,并且还改变了低亲和力GABA位点;特别是,抑制TBPS结合的半数最大GABA浓度从>100(α6β2)变为1μM(α6β2γ2)。3. 变构配体也改变了TBPS与敏感的GABA(A)受体亚型的结合。例如,地西泮仅在α1β2γ2和α3β2γ2亚型中,以及5α-THDOC在所有亚型中,在无GABA时增强TBPS结合,并增强GABA的抑制作用。戊巴比妥在我们检测的所有亚型中仅表现出后一种作用。4. DMCM和锌分别是αβγ和αβ亚型中GABA诱导的氯离子电流的抑制剂,它们产生与激动剂相反的作用,在无GABA时降低TBPS结合,并减弱(或在锌的情况下消除)GABA对TBPS结合的抑制作用。5. 这些结果表明,GABA结合位点及其与TBPS位点的构象偶联受到α亚型(特别是与α1或α3相比的α6)以及涉及γ2亚基的四级相互作用的不同影响。此外,变构配体对TBPS结合的改变不仅包括对TBPS位点的直接(变构)作用,还包括通过GABA位点的间接作用,并且与先前研究中已知的亚型选择性和功能一致。

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