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Pyrimido-Pyrimidines: A Novel Class of Dihydrofolate Reductase Inhibitors

机译:嘧啶-嘧啶类:一类新型的二氢叶酸还原酶抑制剂

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摘要

Inhibitors of dihydrofolate reductase (DHFR), an enzyme that catalyzes 5,6,7,8-tetra-hydrofolate synthesis, have been used as antimicrobial as well as antimetabolite drugs for a long time. Although structurally belonging to different classes, the majority of DHFR inhibitors contain 2,4-diamino substitution in pyrimidine ring. With the aim to introduce pyrimido-pyrimidines as a novel class of bacterial DHFR (bDHFR) inhibitors, 42 compounds belonging to that class have been tested and compared with 18 pteridines using cell and enzyme models and docking studies. A few pyrimido-pyrimidine compounds showed high potency (IC sub(50) less than or equal to 0.05 mu M) and selectivity as inhibitors of bDHFR. These properties seem to be dependent on the stringent structure freedom and flexibility, based on the specific combination of prerequisite structural motifs that enable pyrimido-pyrimidine compounds to fit into bDHFR active site in a relatively specific manner. The presented results will help to set the basis for designing new small molecules, inhibitors of DHFR, with interesting and potentially selective antibacterial properties.
机译:催化5、6、7、8-四氢叶酸合成的酶二氢叶酸还原酶(DHFR)抑制剂已长期用作抗微生物剂和抗代谢药物。尽管在结构上属于不同的类别,但大多数DHFR抑制剂在嘧啶环中均包含2,4-二氨基取代。为了将嘧啶基-嘧啶类作为一类新的细菌DHFR(bDHFR)抑制剂,已测试了42种属于该类的化合物,并使用细胞和酶模型以及对接研究与18种蝶啶进行了比较。少数嘧啶-嘧啶化合物显示出高效能(IC sub(50)小于或等于0.05μM),并且具有作为bDHFR抑制剂的选择性。这些特性似乎取决于严格的结构自由度和柔韧性,这取决于使嘧啶-嘧啶化合物能够以相对特定的方式嵌入bDHFR活性位点的前提结构基序的特定组合。提出的结果将有助于为设计新的小分子,DHFR抑制剂,具有有趣的和潜在的选择性抗菌特性奠定基础。

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