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首页> 外文期刊>Bioorganic and medicinal chemistry >Dibenzosuberyl substituted polyamines and analogs of clomipramine as effective inhibitors of trypanothione reductase; molecular docking, and assessment of trypanocidal activities
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Dibenzosuberyl substituted polyamines and analogs of clomipramine as effective inhibitors of trypanothione reductase; molecular docking, and assessment of trypanocidal activities

机译:二苯并亚戊基取代的多胺和氯米帕明类似物作为锥虫硫醚还原酶的有效抑制剂;分子对接和锥虫活性评估

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摘要

Trypanothione reductase (TR) is an enzyme critical to the maintenance of the thiol redox balance in trypanosomatids, including the genera Trypanosoma and Leishmania that are parasites responsible for several serious diseases. Analogs of clomipramine were prepared since clomipramine is reported to inhibit TR and cure mice infected with trypanosomes, however its psychotropic activity precludes its use as an anti-trypanosomal therapeutic. The clomipramine analogs contained a tricyclic dibenzosuberyl moiety. Additionally a series of polyamines with N-dibenzosuberyl substituents were prepared. All compounds studied were competitive inhibitors of TR and showed trypanocidal activities against Trypanosoma brucei in vitro. The analogs of clomipramine were poor inhibitors of TR, whereas the polyamine derivatives were effective TR inhibitors with the most potent compound, N-4, N-8-bis(dibenzosuberyl) spermine (7), having a K-i value of 0.26 mu M. However, compound (7) did not prolong the lives of mice infected with trypanosomes. Analysis of docking studies indicated: the tricyclic groups of inhibitors bind at four distinct hydrophobic regions in the active site of TR; the importance of the chlorine substituent of clomipramine in binding to TR; and binding of the dibenzosuberyl groups of (7) occur at separate and distinct hydrophobic regions within the active site of TR. (C) 2015 Elsevier Ltd. All rights reserved.
机译:锥虫硫磷还原酶(TR)是维持锥虫的硫醇氧化还原平衡的关键酶,锥虫包括锥虫和利什曼原虫属,是造成几种严重疾病的寄生虫。制备氯米帕明类似物是因为据报道氯米帕明能抑制TR并治愈受锥虫感染的小鼠,但是其精神活性使其无法用作抗锥虫病治疗剂。氯米帕明类似物含有三环二苯并亚戊基部分。另外,制备了一系列具有N-二苯并亚戊基取代基的多胺。研究的所有化合物均为TR的竞争性抑制剂,并在体外显示出对布鲁氏锥虫的锥虫杀灭活性。氯米帕明的类似物是较弱的TR抑制剂,而多胺衍生物是具有最有效的化合物N-4,N-8-双(二​​苯并亚戊基)精胺(7),Ki值为0.26μM的有效TR抑制剂。但是,化合物(7)并不能延长被锥虫感染的小鼠的寿命。对接研究的分析表明:抑制剂的三环基团在TR的活性位点的四个不同的疏水区域结合。氯米帕明氯取代基与TR结合的重要性; (7)的二苯并亚戊基的结合在TR的活性位点内的分开且不同的疏水区发生。 (C)2015 Elsevier Ltd.保留所有权利。

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