首页> 外文期刊>ACS medicinal chemistry letters >Discovery of Potent and Selective Inhibitors of Toxoplasma gondii Thymidylate Synthase for Opportunistic Infections
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Discovery of Potent and Selective Inhibitors of Toxoplasma gondii Thymidylate Synthase for Opportunistic Infections

机译:刚地弓形虫胸苷酸合酶有效和选择性抑制剂的发现。

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Infection by the parasite Toxoplasma gondii (tg) can lead to toxoplasmosis in immunocompromised patients such as organ transplant, cancer, and HIV/AIDS patients. The bifunctional thymidylate synthase-dihydrofolate reductase (TS-DHFR) enzyme is crucial for nucleotide synthesis in T. gondii and represents a potential target to combat T. gondii infection. While species selectivity with drugs has been attained for DHFR, TS is much more conserved across species, and specificity is significantly more challenging. We discovered novel substituted-9H-pyrimido[4,5-b]indoles 1-3 with single-digit nanomolar K_i for tgTS, two of which, 2 and 3, are 28- and 122-fold selective over human TS (hTS). The synthesis of these compounds, and their structures in complex with tgTSDHFR are presented along with binding measurements and cell culture data. These results show, for the very first time, that, in spite of the high degree of conservation of active site residues between hTS and the parasite TS, specificity has been accomplished via novel structures and provides a new target (TS) for selective drug development against parasitic infections.
机译:寄生虫弓形虫(tg)的感染可导致免疫功能低下的患者(例如器官移植,癌症和HIV / AIDS患者)中的弓形虫病。双功能胸苷酸合酶-二氢叶酸还原酶(TS-DHFR)酶对于弓形虫的核苷酸合成至关重要,并且代表了对抗弓形虫感染的潜在靶标。尽管已经获得了针对DHFR的药物物种选择性,但TS在物种间的保守性更高,而且特异性更具挑战性。我们发现新型的用单位纳米摩尔数K_i取代tgTS的新型9H-嘧啶[4,5-b]吲哚1-3,其中两个2和3的选择性是人类TS(hTS)的28和122倍。这些化合物的合成,以及与tgTSDHFR结合的结构与结合测量和细胞培养数据一起呈现。这些结果首次表明,尽管hTS和寄生虫TS之间的活性位点残基高度保守,但已经通过新型结构实现了特异性,并为选择性药物开发提供了新的靶标(TS)防止寄生虫感染。

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