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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Covalent modification of GABAA receptor isoforms by a diazepam analogue provides evidence for a novel benzodiazepine binding site that prevents modulation by these drugs.
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Covalent modification of GABAA receptor isoforms by a diazepam analogue provides evidence for a novel benzodiazepine binding site that prevents modulation by these drugs.

机译:地西epa类似物对GABAA受体同工型的共价修饰为防止这些药物调节的新型苯并二氮杂结合位点提供了证据。

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Classical benzodiazepines, for example diazepam, interact with alpha(x)beta(2)gamma(2) GABA(A) receptors, x = 1, 2, 3, 5. Little is known about effects of alpha subunits on the structure of the binding pocket. We studied here the interaction of the covalently reacting diazepam analog 7-Isothiocyanato-5-phenyl-1,3-dihydro-2H-1,4-benzodiazepin-2-one (NCS compound) with alpha(1)H101Cbeta(2)gamma(2) and with receptors containing the homologous mutation, alpha(2)H101Cbeta(2)gamma(2), alpha(3)H126Cbeta(2)gamma(2) and alpha(5)H105Cbeta(2)gamma(2). This comparison was extended to alpha(6)R100Cbeta(2)gamma(2) receptors as this mutation conveys to these receptors high affinity towards classical benzodiazepines. The interaction was studied at the ligand binding level and at the functional level using electrophysiological techniques. Results indicate that the geometry of alpha(6)R100Cbeta(2)gamma(2) enables best interaction with NCS compound, followed by alpha(3)H126Cbeta(2)gamma(2), alpha(1)H101Cbeta(2)gamma(2) and alpha(2)H101Cbeta(2)gamma(2), while alpha(5)H105Cbeta(2)gamma(2) receptors show little interaction. Our results allow conclusions about the relative apposition of alpha(1)H101 and homologous positions in alpha(2), alpha(3), alpha(5) and alpha(6) with the position occupied by -Cl in diazepam. During this study we found evidence for the presence of a novel site for benzodiazepines that prevents modulation of GABA(A) receptors via the classical benzodiazepine site. The novel site potentially contributes to the high degree of safety to some of these drugs. Our results indicate that this site may be located at the alpha/beta subunit interface pseudo-symmetrically to the site for classical benzodiazepines located at the alpha/gamma interface.
机译:经典的苯二氮卓类药物(例如地西epa)与alpha(x)beta(2)gamma(2)GABA(A)受体(x = 1、2、3、5)相互作用。对α亚基对其结构的影响知之甚少。装订袋。我们在这里研究了地西epa类似物7-Isothiocyanato-5-phenyl-1,3-dihydro-2H-1,4-benzodiazepin-2-one(NCS compound)与α(1)H101Cbeta(2)gamma的共价反应(2)和包含同源突变的受体,alpha(2)H101Cbeta(2)gamma(2),alpha(3)H126Cbeta(2)gamma(2)和alpha(5)H105Cbeta(2)gamma(2)。此比较扩展到alpha(6)R100Cbeta(2)gamma(2)受体,因为此突变向这些受体传达了对经典苯并二氮杂卓的高亲和力。使用电生理技术在配体结合水平和功能水平研究了相互作用。结果表明,alpha(6)R100Cbeta(2)gamma(2)的几何形状可实现与NCS化合物的最佳相互作用,随后是alpha(3)H126Cbeta(2)gamma(2),alpha(1)H101Cbeta(2)gamma( 2)和alpha(2)H101Cbeta(2)gamma(2),而alpha(5)H105Cbeta(2)gamma(2)受体显示很少的相互作用。我们的结果可以得出有关α(1)H101和alpha(2),alpha(3),alpha(5)和alpha(6)中同位置与地西epa中-Cl相对位置的相对位置的结论。在这项研究中,我们发现有证据表明存在苯二氮卓类药物的新位点,该位点可通过经典的苯二氮卓类化合物位点阻止GABA(A)受体的调节。新的网站可能有助于提高其中某些药物的安全性。我们的结果表明,该位点可能位于与位于α/γ界面的经典苯并二氮杂类位点伪对称的α/β亚基界面。

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