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首页> 外文期刊>Chemical biology and drug design >Insights into the Structure and Pharmacology of the Human Trace Amine-Associated Receptor 1 (hTAAR1): Homology Modelling and Docking Studies
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Insights into the Structure and Pharmacology of the Human Trace Amine-Associated Receptor 1 (hTAAR1): Homology Modelling and Docking Studies

机译:人类痕量胺相关受体1(hTAAR1)的结构和药理学的见解:同源性建模和对接研究

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摘要

Trace amine-associated receptor 1 (TAAR1) is a G protein- coupled receptor that belongs to the family of TAAR receptors and responds to a class of compounds called trace amines, such as β-phenylethylamine(β-PEA) and 3-iodothyronamine (T_1AM). The receptor is known to have a very rich pharmacology and could be also activated by other classes of compounds, including adrenergic and serotonergic ligands. It is expected that targeting TAAR1 could provide a novel pharmacological approach to correct monoaminergic dysfunctions found in several brain disorders, such as schizophrenia, depression, attention deficit hyperactivity disorder and Parkinson's disease. Only recently, the first selective TAAR1 agonist RO5166017 has been identified. To explore the molecular mechanisms of protein-agonist interaction and speed up the identification of new chemical entities acting on this biomolecular target, we derived a homology model for the hTAAR1. The putative protein-binding site has been explored by comparing the hTAAR1 model with the β_2-adrenoreceptor binding site, available by X-ray crystallization studies, and with the homology modelled 5HT_(1A) receptor. The obtained results, in tandem with docking studies performed with RO5166017, β- PEA and T_1AM, provided an opportunity to reasonably identify the hTAAR1 key residues involved in ligand recognition and thus define important starting points to design new agonists.
机译:痕量胺相关受体1(TAAR1)是一种G蛋白偶联受体,属于TAAR受体家族,可响应一类称为痕量胺的化合物,例如β-苯乙胺(β-PEA)和3-碘化胸腺嘧啶( T_1AM)。已知该受体具有非常丰富的药理学,并且还可以被其他类型的化合物激活,包括肾上腺素能和血清素能配体。预计靶向TAAR1可以提供一种新颖的药理方法,以纠正在几种脑部疾病(例如精神分裂症,抑郁症,注意力不足过动症和帕金森氏病)中发现的单胺能功能障碍。仅在最近,才鉴定出第一个选择性TAAR1激动剂RO5166017。为了探索蛋白质-激动剂相互作用的分子机制,并加快鉴定作用于该生物分子靶标的新化学实体,我们推导了hTAAR1的同源性模型。通过将hTAAR1模型与β_2肾上腺素受体结合位点(可通过X射线结晶研究获得)以及与同源性建模的5HT_(1A)受体进行比较,探索了推定的蛋白质结合位点。获得的结果,与用RO5166017,β-PEA和T_1AM进行的对接研究相结合,为合理地鉴定参与配体识别的hTAAR1关键残基提供了机会,从而为设计新的激动剂确定了重要的起点。

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