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首页> 外文期刊>Journal of Medicinal Chemistry >5-Substituted Tetrazoles as Bioisosteres of Carboxylic Acids. Bioisosterism and Mechanistic Studies on Glutathione Reductase Inhibitors as Antimalarials.
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5-Substituted Tetrazoles as Bioisosteres of Carboxylic Acids. Bioisosterism and Mechanistic Studies on Glutathione Reductase Inhibitors as Antimalarials.

机译:5-取代的四唑作为羧酸的生物等排体。谷胱甘肽还原酶抑制剂作为抗疟药的生物等效性和机理研究。

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摘要

Plasmodium parasites are exposed to elevated fluxes of reactive oxygen species during intraerythrocytic life. The most important antioxidative systems are based on the glutathione reductases of the malarial parasite Plasmodium falciparum and the host erythrocyte. The development of menadione chemistry has led to the selection of the carboxylic acid 6-[2'-(3'-methyl)-1',4'-naphthoquinolyl] hexanoic acid M(5)() as( )()an inhibitor of the parasitic enzyme. As reported here, revisiting the mechanism of M(5)() action revealed an uncompetitive inhibition type with respect to both NADPH and glutathione disulfide. Masking the polarity of the acidic function of M(5)() by ester or amide bonds improved antiplasmodial activity. Bioisosteric replacement of the carboxylic function by tetrazole to increase bioavailability and to maintain comparable acidity led to improved antimalarial properties as well, but only with the cyanoethyl-protected tetrazoles. Using computed ab initio quantum methods, detailed analyses of the electronic profiles and the molecular properties evidenced the similarity of M(5)() and the bioisoteric tetrazole T(4)(). The potential binding site of these molecules is discussed in light of the recently solved crystallographic structure of P. falciparum enzyme.
机译:在红细胞内生活期间,疟原虫疟原虫暴露于活性氧通量升高。最重要的抗氧化系统是基于疟原虫恶性疟原虫和宿主红细胞的谷胱甘肽还原酶。甲萘醌化学的发展导致选择了羧酸6- [2'-(3'-甲基)-1',4'-萘喹啉基]己酸M(5)()作为抑制剂的寄生酶。如此处报道,重新探讨M(5)()的作用机理揭示了对NADPH和谷胱甘肽二硫键的竞争性抑制类型。通过酯或酰胺键掩盖M(5)()的酸性功能的极性改善了抗血浆活性。用四唑对羧酸官能团进行生物等位取代以增加生物利用度并保持可比的酸度也导致改善的抗疟性能,但仅用氰乙基保护的四唑。使用计算的从头算量子方法,详细的电子图谱和分子特性分析证明了M(5)()和生物异构四唑T(4)()的相似性。鉴于恶性疟原虫酶的最近解析的晶体结构,讨论了这些分子的潜在结合位点。

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