首页> 外文期刊>European Journal of Pharmacology: An International Journal >Chimeric, mutant orexin receptors show key interactions between orexin receptors, peptides and antagonists.
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Chimeric, mutant orexin receptors show key interactions between orexin receptors, peptides and antagonists.

机译:嵌合,突变的orexin受体显示orexin受体,肽和拮抗剂之间的关键相互作用。

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Orexin receptor antagonists are being investigated as therapeutic agents for insomnia and addictive disorders. In this study the interactions between the orexin receptors (orexin 1 receptor and orexin 2 receptor), orexin peptides, and small molecule orexin antagonists were explored. To study these phenomena, a variety of mutant orexin receptors was made and tested using receptor binding and functional assays. Domains of the two orexin receptors were exchanged to show the critical ligand binding domains for orexin peptides and representative selective orexin receptor antagonists. Results from domain exchanges between the orexin receptors suggest that transmembrane domain 3 is crucially important for receptor interactions with small molecule antagonists. These data also suggest that the orexin peptides occupy a larger footprint, interacting with transmembrane domain 1, the amino terminus and transmembrane domain 5 as well as transmembrane domain 3. Transmembrane domain 3 has been shown to be an important part of the small molecule binding pocket common to rhodopsin and beta2-adrenergic receptors. Additional orexin receptor 2 point mutations were made based on the common arrangement of receptor transmembrane domains shown in the G-protein coupled receptor crystal structure literature and the impact of orexin 2 receptor residue threonine 135 on the ligand selectivity of the 2 orexin receptors. These data support a model of the orexin receptor binding pocket in which transmembrane domains 3 and 5 are prominent contributors to ligand binding and functional activity. The data also illustrate key contact points for ligand interactions in the consensus small molecule pocket of these receptors.
机译:食欲素受体拮抗剂正在研究作为失眠和成瘾性疾病的治疗剂。在这项研究中,探索了orexin受体(orexin 1受体和orexin 2受体),orexin肽和小分子orexin拮抗剂之间的相互作用。为了研究这些现象,制备了多种突变的食欲素受体,并使用受体结合和功能测定进行了测试。交换两个orexin受体的结构域以显示orexin肽和代表性的选择性orexin受体拮抗剂的关键配体结合结构域。食欲素受体之间的结构域交换的结果表明,跨膜结构域3对于受体与小分子拮抗剂的相互作用至关重要。这些数据还表明,食欲素肽占据较大的足迹,与跨膜结构域1,氨基末端和跨膜结构域5以及跨膜结构域3相互作用。跨膜结构域3已被证明是小分子结合口袋的重要部分。视紫红质和β2-肾上腺素受体共有。基于G蛋白偶联受体晶体结构文献中所示的受体跨膜结构域的常见排列以及orexin 2受体残基苏氨酸135对2种orexin受体的配体选择性的影响,进行了其他orexin受体2点突变。这些数据支持了orexin受体结合口袋的模型,其中跨膜结构域3和5是配体结合和功能活性的主要贡献者。数据还说明了这些受体的共有小分子口袋中配体相互作用的关键接触点。

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