首页> 美国卫生研究院文献>The Journal of Pharmacology and Experimental Therapeutics >Ring Substituents on Substituted Benzamide Ligands Indirectly Mediate Interactions with Position 7.39 of Transmembrane Helix 7 of the D4 Dopamine Receptor
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Ring Substituents on Substituted Benzamide Ligands Indirectly Mediate Interactions with Position 7.39 of Transmembrane Helix 7 of the D4 Dopamine Receptor

机译:取代的苯甲酰胺配体上的环取代基间接介导与D4多巴胺受体跨膜螺旋7位置7.39的相互作用。

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摘要

In an effort to delineate how specific molecular interactions of dopamine receptor ligand classes vary between D2-like dopamine receptor subtypes, a conserved threonine in transmembrane (TM) helix 7 (Thr7.39), implicated as a key ligand interaction site with biogenic amine G protein-coupled receptors, was substituted with alanine in D2 and D4 receptors. Interrogation of different ligand chemotypes for sensitivity to this substitution revealed enhanced affinity in the D4, but not the D2 receptor, specifically for substituted benzamides (SBAs) having polar 4- (para) and/or 5- (meta) benzamide ring substituents. D4-T7.39A was fully functional, and the mutation did not alter the sodium-mediated positive and negative allostery observed with SBAs and agonists, respectively. With the exception of the non-SBA ligand (+)-butaclamol, which, in contrast to certain SBAs, had decreased affinity for the D4-T7.39A mutant, the interactions of numerous other ligands were unaffected by this mutation. SBAs were docked into D4 models in the same mode as observed for eticlopride in the D3 crystal structure. In this mode, interactions with TM5 and TM6 residues constrain the SBA ring position that produces distal steric crowding between pyrrolidinyl/diethylamine moieties and D4-Thr7.39. Ligand-residue interaction energy profiles suggest this crowding is mitigated by substitution with a smaller alanine. The profiles indicate sites that contribute to the SBA binding interaction and site-specific energy changes imparted by the D4-T7.39A mutation. Substantial interaction energy changes are observed at only a few positions, some of which are not conserved among the dopamine receptor subtypes and thus seem to account for this D4 subtype-specific structure-activity relationship.
机译:为了描述多巴胺受体配体类型的特定分子相互作用如何在D2类多巴胺受体亚型之间变化,跨膜(TM)螺旋7(Thr7.39)中的保守苏氨酸被认为是与生物胺G的关键配体相互作用位点蛋白偶联受体在D2和D4受体中被丙氨酸取代。询问不同配体化学型对这种取代的敏感性表明,在D4受体中亲和力增强,但在D2受体中却没有,特别是对于具有极性4-(对)和/或5-(间)苯甲酰胺环取代基的取代苯甲酰胺(SBA)。 D4-T7.39A具有完全的功能,并且该突变不会改变分别用SBA和激动剂观察到的钠介导的阳性和阴性变构。除了与某些SBA相比,对D4-T7.39A突变体的亲和力下降的非SBA配体(+)-丁ac醇外,许多其他配体的相互作用均不受此突变的影响。 SBA以与D3晶体结构中艾替普利特相同的模式停靠在D4模型中。在这种模式下,与TM5和TM6残基的相互作用限制了SBA环的位置,从而在吡咯烷基/二乙胺部分与D4-Thr7.39之间产生远端空间拥挤。配体-残基相互作用能谱表明,用较小的丙氨酸替代可缓解这种拥挤。这些图谱表明了有助于SBA结合相互作用和D4-T7.39A突变赋予的位点特异性能量变化的位点。仅在几个位置上观察到大量的相互作用能变化,其中一些在多巴胺受体亚型中不保守,因此似乎可以解释这种D4亚型特异性的结构-活性关系。

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