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首页> 外文期刊>Journal of Medicinal Chemistry >2- and 3-substituted 1,4-naphthoquinone derivatives as subversive substrates of trypanothione reductase and lipoamide dehydrogenase from Trypanosoma cruzi: synthesis and correlation between redox cycling activities and in vitro cytotoxicity.
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2- and 3-substituted 1,4-naphthoquinone derivatives as subversive substrates of trypanothione reductase and lipoamide dehydrogenase from Trypanosoma cruzi: synthesis and correlation between redox cycling activities and in vitro cytotoxicity.

机译:2-和3-取代的1,4-萘醌衍生物作为锥虫锥虫还原酶和脂酰胺脱氢酶的颠覆性底物:氧化还原循环活性与体外细胞毒性之间的合成和相关性。

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摘要

Trypanothione reductase (TR) is both a valid and an attractive target for the design of new trypanocidal drugs. Starting from menadione, plumbagin, and juglone, three distinct series of 1,4-naphthoquinones (NQ) were synthesized as potential inhibitors of TR from Trypanosoma cruzi (TcTR). The three parent molecules were functionalized at carbons 2 and/or 3 by various polyamine chains. Optimization of TcTR inhibition and TcTR specificity versus human disulfide reductases was achieved with the 3,3'-[polyaminobis(carbonylalkyl)]bis(1,4-NQ) series 19-20, in which an optimum chain length was determined for inhibition of the trypanothione disulfide reduction. The most active derivatives against trypanosomes in cultures were also studied as subversive substrates of TcTR and lipoamide dehydrogenase (TcLipDH). The activities were measured by following NAD(P)H oxidation as well as coupling the reactions to the reduction of cytochrome c which permits the detection of one-electron transfer. For TcTR, 20(4-c) proved to be a potent subversive substrate and an effective uncompetitive inhibitor versus trypanothione disulfide and NADPH. Molecular modeling studies based on the known X-ray structures of TcTR and hGR were conducted in order to compare the structural features, dimensions, and accessibility of the cavity at the dimer interface of TcTR with that of hGR, as one of the putative NQ binding sites. TcLipDH reduced the plumbagin derivatives by an order of magnitude faster than the corresponding menadione derivatives. Such differences were not observed with the pig heart enzyme. The most efficient and specific subversive substrates of TcTR and TcLipDH exhibited potent antitrypanosomal activity in in vitro T. brucei and T. cruzi cultures. The results obtained here confirm that reduction of NQs by parasitic flavoenzymes is a promising strategy for the development of new trypanocidal drugs.
机译:Trypanothione还原酶(TR)是设计新的锥虫病药物的既有效又有吸引力的靶标。从甲萘醌,羽扇豆蛋白和胡桃木酮开始,合成了三个不同系列的1,4-萘醌(NQ)作为克氏锥虫(TcTR)潜在的TR抑制剂。三个母体分子通过各种多胺链在碳2和/或3上官能化。利用3,3'-[聚氨基双(羰基烷基)]双(1,4-NQ)系列19-20实现了相对于人类二硫键还原酶的TcTR抑制和TcTR特异性的优化,其中确定了抑制TcTR的最佳链长。锥虫二硫化物还原。还研究了在培养物中针对锥虫的活性最高的衍生物作为TcTR和脂酰胺脱氢酶(TcLipDH)的颠覆性底物。通过随后的NAD(P)H氧化以及将反应与细胞色素c的还原反应耦合来测量活性,从而可以检测单电子转移。对于TcTR,20(4-c)被证明是一种有效的颠覆性底物,并且是与锥虫二硫醚和NADPH相比有效的非竞争性抑制剂。进行了基于TcTR和hGR的已知X射线结构的分子建模研究,目的是比较TcTR与hGR的二聚体界面处腔的结构特征,尺寸和可及性,这是推定的NQ结合之一网站。 TcLipDH可以使铅青霉素衍生物的还原速度比相应的甲萘醌衍生物快一个数量级。用猪心脏酶未观察到这种差异。 TcTR和TcLipDH的最有效,最特异的颠覆性底物在体外布鲁氏杆菌和克鲁氏克鲁维酵母培养物中表现出强效的抗锥虫活性。此处获得的结果证实,通过寄生性黄酮酶减少NQs是开发新的锥虫杀菌药物的有前途的策略。

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