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首页> 外文期刊>European Journal of Medicinal Chemistry: Chimie Therapeutique >Flexible diaminodihydrotriazine inhibitors of Plasmodium falciparum dihydrofolate reductase: Binding strengths, modes of binding and their antimalarial activities
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Flexible diaminodihydrotriazine inhibitors of Plasmodium falciparum dihydrofolate reductase: Binding strengths, modes of binding and their antimalarial activities

机译:柔性二氨基胺二硫氨嗪抑制剂疟原虫二羟氢醇还原酶:结合强度,结合模式及其抗疟疾

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摘要

A series of flexible diaminodihydrotriazines or cycloguanil (Cyc) analogues are developed and shown to inhibit P. falciparum dihydrofolate reductase (PfDHFR) of the wild type or those carrying either single (S108N), double (C59R + S108N and AI6V + S108T), triple (N51I + C59R + S108N and C59R + S108N + I164L) or quadruple (N51I + C59R + S108N + I164L) mutations, responsible for antifolate resistance. The flexibility of the side chain at position N-1 has been included in the design so as to avoid unfavourable steric interaction with the side chain of residue 108 of the resistant mutants. The inhibition constants of many inhibitors for the mutant enzymes are in the low nanomolar region. Regaining of drug binding efficacies was achieved with both AI6V and S108N series of mutants. X-ray studies of some enzyme-inhibitor complexes designed for optimal interaction with the mutant enzymes reveal the modes of binding in line with the K-i values. A number of these compounds show excellent antimalarial activities against resistant P. falciparum bearing the mutant enzymes, and exhibit low cytotoxicity to mammalian cells, making them good candidates for further development as antimalarial drugs. (C) 2020 Elsevier Masson SAS. All rights reserved.
机译:开发出一系列柔性二氨基二氢嗪或环瓜(CYC)类似物,并显示野生型或携带单一(S108N),双(C59R + S108N和AI6V + S108T)的野生型或那些人的P. falciparum二羟氢醇还原酶(PFDHFR)。 (N51i + C59R + S108N和C59R + S108N + I164L)或四重(N51I + C59R + S108N + I164L)突变,负责防雾性。侧链在位置N-1处的柔韧性已包括在设计中,以避免与抗性突变体的残余物108的侧链相互作用。对于突变酶的许多抑制剂的抑制常数在低纳摩尔区域。通过AI6V和S108N系列突变体达到药物结合效果的重新获得。设计用于与突变酶的最佳相互作用设计的一些酶抑制剂复合物的X射线研究揭示了与K-I值的结合的模式。许多这些化合物显示出抗突变酶的抗性P.抗性的抗疟疾活性,并且对哺乳动物细胞表现出低细胞毒性,使其成为良好的候选人,以进一步发展为抗疟药。 (c)2020 Elsevier Masson SAS。版权所有。

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