首页> 外文期刊>Journal of Medicinal Chemistry >Neurosteroid analogues. 14. Alternative ring system scaffolds: GABA modulatory and anesthetic actions of cyclopenta[b]phenanthrenes and cyclopenta[b]anthracenes
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Neurosteroid analogues. 14. Alternative ring system scaffolds: GABA modulatory and anesthetic actions of cyclopenta[b]phenanthrenes and cyclopenta[b]anthracenes

机译:神经甾体类似物。 14.替代环系统支架:环戊[b]菲和环戊[b]蒽的GABA调节和麻醉作用

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Although the structural features of binding sites for neuroactive steroids on gamma-aminobutryic acid type A (GABA(A)) receptors are still largely unknown, structure-activity studies have established a pharmacophore for potent enhancement of GABA(A) receptor function by neuroactive steroids. This pharmacophore emphasizes the importance of the position and stereochemistry of hydrogen-bonding groups on the steroid. However, the importance of the steroid ring system in mediating hydrophobic interactions with the GABA(A) receptor is unclear. We have taken the cyclopenta[b]phenanthrene (tetracyclic compounds with a nonlinear ring system different from that of steroids) and cyclopenta[b]anthracene (tetracyclic molecules with a linear 6 - 6 - 6 - 5 carbocyclic ring system) ring systems and properly substituted them to satisfy the pharmacophore requirements of the critical hydrogen-bond donor and acceptor groups found in neuroactive steroids. We have found these cyclopenta[b]phenanthrene and cyclopenta[b]anthracene analogues to have potent activity at the GABA(A) receptor, rivaling that of the most potent steroid modulators. Single-channel analysis of electrophysiological data indicates that similarly substituted analogues in the different ring systems affect the kinetic components of macroscopic currents in different ways. Mutations to the hydrogen bonding amino acids at the putative steroid binding site (alpha 1Q241L mutation and alpha 1N407A/Y410F double mutation) produce similar effects on macroscopic current amplitude by the different ring system analogues suggesting that the different kinetic effects are explained by the precise interactions of each analogue with the same binding site(s).
机译:尽管仍然很大程度上未知A型Gamma-氨基丁酸(GABA(A))受体上神经活性类固醇的结合位点的结构特征,但结构活性研究已经建立了一种药效团,可通过神经活性类固醇有效增强GABA(A)受体的功能。 。该药效基团强调了类固醇上氢键基团的位置和立体化学的重要性。但是,尚不清楚类固醇环系统在介导与GABA(A)受体的疏水相互作用中的重要性。我们已经适当地采用了环戊[b]菲(具有不同于类固醇的非线性环系统的四环化合物)和环戊[b]蒽(具有线性6-6-6-5碳环的线性四环分子)环系统。取代它们以满足神经活性类固醇中关键的氢键供体和受体基团的药效团要求。我们已经发现这些环戊[b]菲和环戊[b]蒽类似物对GABA(A)受体具有有效的活性,可与最有效的类固醇调节剂相媲美。电生理数据的单通道分析表明,不同环系统中类似取代的类似物以不同方式影响宏观电流的动力学成分。假定的类固醇结合位点上的氢键氨基酸突变(α1Q241L突变和α1N407A / Y410F双突变)通过不同的环系统类似物对宏观电流振幅产生相似的影响,这表明不同的动力学作用可以通过精确的相互作用来解释。每个具有相同结合位点的类似物。

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