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Evaluation of the Isoflavone Genistein as Reversible Human Monoamine Oxidase-A and -B Inhibitor

机译:异黄酮染料木黄酮作为可逆性人单胺氧化酶-A和-B抑制剂的评价

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摘要

Monoamine oxidases inhibitors (MAOIs) are effective therapeutic drugs for managing Parkinson's disease (PD) and depression. However, their irreversibility may lead to rare but serious side effects. As finding safer and reversible MAOIs is our target, we characterized the recombinant human (h) MAO-A and MAO-B inhibition potentials of two common natural isoflavones, genistein (GST) and daidzein (DZ) using luminescence assay. The results obtained showed that DZ exhibits partial to no inhibition of the isozymes examined while GST inhibited hMAO-B (IC50 of 6.81 μM), and its hMAO-A inhibition was more potent than the standard deprenyl. Furthermore, the reversibility, mode of inhibition kinetics, and tyramine oxidation of GST were examined. GST was a time-independent reversible and competitive hMAO-A and hMAO-B inhibitor with a lower K i of hMAO-B (1.45 μM) than hMAO-A (4.31 μM). GST also inhibited hMAO-B tyramine oxidation and hydrogen peroxide production more than hMAO-A. Docking studies conducted indicated that the GST reversibility and hMAO-B selectivity of inhibition may relate to C5-OH effects on its orientation and its interactions with the threonine 201 residue of the active site. It was concluded from this study that the natural product GST has competitive and reversible MAOs inhibitions and may be recommended for further investigations as a useful therapeutic agent for Parkinson's disease.
机译:单胺氧化酶抑制剂(MAOIs)是用于治疗帕金森氏病(PD)和抑郁症的有效治疗药物。但是,它们的不可逆性可能导致罕见但严重的副作用。由于找到更安全和可逆的MAOI是我们的目标,因此我们使用发光测定法对了两种常见的天然异黄酮,染料木黄酮(GST)和大豆黄酮(DZ)的重组人(h)MAO-A和MAO-B抑制潜力进行了表征。获得的结果表明,DZ对所检测的同工酶没有部分或完全没有抑制作用,而GST抑制了hMAO-B(IC50为6.81μM),并且其hMAO-A抑制作用比标准的异戊二烯基更有效。此外,研究了GST的可逆性,抑制动力学模式和酪胺氧化。 GST是时间依赖性的可逆和竞争性hMAO-A和hMAO-B抑制剂,hMAO-B(1.45μm)的K i低于hMAO-A(4.31μm)。与hMAO-A相比,GST还抑制hMAO-B酪胺的氧化和过氧化氢的产生。对接研究表明,GST的可逆性和抑制作用的hMAO-B选择性可能与C5-OH对其取向及其与活性位点的苏氨酸201残基的相互作用有关。从这项研究得出的结论是,天然产物GST具有竞争性和可逆性MAOs抑制作用,因此可以作为帕金森氏病的有用治疗剂推荐用于进一步研究。

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