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γ-氨基丁酸A(GABA(A))受体γ2亚基存在点突变的小鼠中各种苯二氮䓬类位点配体的亲和力

Affinity of various benzodiazepine site ligands in mice with a point mutation in the GABA(A) receptor gamma2 subunit.

作者信息

Ogris Waltraud, Pöltl Angelika, Hauer Birgit, Ernst Margot, Oberto Alessandra, Wulff Peer, Höger Harald, Wisden William, Sieghart Werner

机构信息

Division of Biochemistry and Molecular Biology, Brain Research Institute, Medical University of Vienna, Spitalgasse 4, A-1090 Vienna, Austria.

出版信息

Biochem Pharmacol. 2004 Oct 15;68(8):1621-9. doi: 10.1016/j.bcp.2004.07.020.

Abstract

The benzodiazepine binding site of GABA(A) receptors is located at the interface of the alpha and gamma subunits. Certain point mutations in these subunits have been demonstrated to dramatically reduce the affinity of benzodiazepine binding site ligands for these receptors. Recently, mice were generated with a phenylalanine (F) to isoleucine (I) substitution at position 77 in the gamma2 subunit of GABA(A) receptors. Here we tested the potency of 24 benzodiazepine binding site ligands from 16 different structural classes for inhibition of [(3)H]flunitrazepam binding to brain membranes of these gamma2F77I mice. Results indicate that the potency of the classical 1,4-benzodiazepines, of the 1,4-thienodiazepine clotiazepam, the 1,5-benzodiazepine clobazam, or the pyrazoloquinoline CGS 9896 is only 2-7-fold reduced by this gamma2F77I point mutation. The potency of the imidazopyrimidines Ru 32698, Ru 33203, and Ru 33356, of the imidazoquinoline Ru 31719, or the pyrazolopyridine CGS 20625 is reduced 10-20-fold, whereas the potency of some imidazobenzodiazepines, beta-carbolines, cyclopyrrolones, imidazopyridines, triazolopyridazines, or quinolines is 100-1000-fold reduced. Interestingly, the extent of potency reduction induced by the gamma2F77I point mutation varied within the structural classes of compounds. Results support and significantly extend previous observations indicating that the residue gamma2F77 is important for high affinity binding of some, but not all benzodiazepine site ligands.

摘要

γ-氨基丁酸A(GABA(A))受体的苯二氮䓬结合位点位于α亚基和γ亚基的界面处。已证实这些亚基中的某些点突变会显著降低苯二氮䓬结合位点配体对这些受体的亲和力。最近,人们培育出了GABA(A)受体γ2亚基第77位的苯丙氨酸(F)被异亮氨酸(I)取代的小鼠。在此,我们测试了来自16种不同结构类别的24种苯二氮䓬结合位点配体对[(3)H]氟硝西泮与这些γ2F77I小鼠脑膜结合的抑制效力。结果表明,经典的1,4-苯二氮䓬类、1,4-噻吩并二氮䓬类氯噻西泮、1,5-苯二氮䓬类氯巴占或吡唑并喹啉类CGS 9896的效力仅因这种γ2F77I点突变而降低2至7倍。咪唑并嘧啶类Ru 32698、Ru 33203和Ru 33356、咪唑并喹啉类Ru 31719或吡唑并吡啶类CGS 20625的效力降低了10至20倍,而一些咪唑并苯二氮䓬类、β-咔啉类、环吡咯酮类、咪唑吡啶类、三唑并哒嗪类或喹啉类的效力则降低了100至1000倍。有趣的是,γ2F77I点突变引起的效力降低程度在化合物的结构类别中有所不同。结果支持并显著扩展了先前的观察结果,表明γ2F77残基对某些(但不是所有)苯二氮䓬位点配体的高亲和力结合很重要。

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