Berezhnoy Dmytro, Nyfeler Yves, Gonthier Anne, Schwob Hervé, Goeldner Maurice, Sigel Erwin
Department of Pharmacology, University of Bern, CH-3010 Bern, Switzerland.
J Biol Chem. 2004 Jan 30;279(5):3160-8. doi: 10.1074/jbc.M311371200. Epub 2003 Nov 11.
Benzodiazepines are used for their sedative/hypnotic, anxiolytic, muscle relaxant, and anticonvulsive effects. They exert their actions through a specific high affinity binding site on the major inhibitory neurotransmitter receptor, the gamma-aminobutyric acid, type A (GABA(A)) receptor channel, where they act as positive allosteric modulators. To start to elucidate the relative positioning of benzodiazepine binding site ligands in their binding pocket, GABA(A) receptor residues thought to reside in the site were individually mutated to cysteine and combined with benzodiazepine analogs carrying substituents reactive to cysteine. Direct apposition of such reactive partners is expected to lead to an irreversible site-directed reaction. We describe here the covalent interaction of alpha(1)H101C with a reactive group attached to the C-7 position of diazepam. This interaction was studied at the level of radioactive ligand binding and at the functional level using electrophysiological methods. Covalent reaction occurs concomitantly with occupancy of the binding pocket. It stabilizes the receptor in its allosterically stimulated conformation. Covalent modification is not observed in wild type receptors or when using mutated alpha(1)H101C-containing receptors in combination with the reactive ligand pre-reacted with a sulfhydryl group, and the modification rate is reduced by the binding site ligand Ro15-1788. We present in addition evidence that gamma(2)Ala-79 is probably located in the access pathway of the ligand to its binding pocket.
苯二氮䓬类药物因其镇静/催眠、抗焦虑、肌肉松弛和抗惊厥作用而被使用。它们通过与主要抑制性神经递质受体——A型γ-氨基丁酸(GABA(A))受体通道上的特定高亲和力结合位点相互作用来发挥作用,在该位点它们作为正变构调节剂。为了开始阐明苯二氮䓬类结合位点配体在其结合口袋中的相对位置,将被认为位于该位点的GABA(A)受体残基逐个突变为半胱氨酸,并与携带对半胱氨酸有反应性取代基的苯二氮䓬类似物结合。预期这种反应性伙伴的直接并置会导致不可逆的位点定向反应。我们在此描述了α(1)H101C与附着于地西泮C-7位的反应性基团之间的共价相互作用。这种相互作用在放射性配体结合水平和使用电生理方法的功能水平上进行了研究。共价反应与结合口袋的占据同时发生。它使受体稳定在其变构激活构象中。在野生型受体中未观察到共价修饰,或者当使用含α(1)H101C突变的受体与已与巯基预反应的反应性配体结合时也未观察到共价修饰,并且结合位点配体Ro15-1788会降低修饰速率。此外,我们还提供了证据表明γ(2)Ala-79可能位于配体进入其结合口袋的通道中。