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首页> 外文期刊>Biological & pharmaceutical bulletin >Mutational analysis of the alpha 1a-adrenergic receptor binding pocket of antagonists by radioligand binding assay.
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Mutational analysis of the alpha 1a-adrenergic receptor binding pocket of antagonists by radioligand binding assay.

机译:通过放射性配体结合测定法对拮抗剂的α1a-肾上腺素受体结合袋进行突变分析。

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摘要

Computer simulations of the human alpha 1a-adrenergic receptor (alpha 1a-AR) based on the crystal structure of rhodopsin have been combined with experimental site-directed mutagenesis to investigate the role of residues in the transmembrane domains in antagonist binding. Previous molecular dynamics studies from our laboratory indicated that the amino acids Asp106 in the third transmembrane domain (TMD), Gln167 in TMD IV of alpha 1a-AR were directly involved in prazosin, tamsulosin and KMD-3213 binding. The Asp106Ala mutant did not exhibit any affinity for [3H]prazosin. On the other hand, the Gln167Phe mutant alpha 1a-AR showed reduced binding affinity for [3H]prazosin. In competition binding experiment the binding affinities of prazosin and tamsulosin were increased 11-fold and 33-fold respectively to Gln167Phe mutant in comparison with wild type receptor. It seems that mutation of this residue by phenylalanine has offered more interaction for the ligands with its aromatic ring. The results provide direct evidence that these amino acid residues are responsible for the interactions between alpha 1a-AR and radioligand [3H]prazosin as well as tamsulosin and KMD-3213.
机译:基于视紫红质的晶体结构的人类α1a-肾上腺素能受体(α1a-AR)的计算机模拟已与实验性定点诱变相结合,以研究残基在跨膜域中在拮抗剂结合中的作用。我们实验室先前的分子动力学研究表明,α1a-AR的第三个跨膜结构域(TMD)中的氨基酸Asp106,TMD IV中的Gln167直接参与了哌唑嗪,坦洛新和KMD-3213的结合。 Asp106Ala突变体对[3H] prazosin没有任何亲和力。另一方面,Gln167Phe突变体alpha 1a-AR显示对[3H] prazosin的结合亲和力降低。在竞争结合实验中,与野生型受体相比,哌唑嗪和坦洛新的结合亲和力对Gln167Phe突变体分别增加了11倍和33倍。看起来该残基被苯丙氨酸突变已经为配体与其芳环提供了更多的相互作用。结果提供了直接的证据,这些氨基酸残基是造成α1a-AR与放射性配体[3H]吡唑嗪以及坦索罗辛和KMD-3213之间相互作用的原因。

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