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Chemo-Immunotherapeutic Antimalarials Targeting Isoprenoid Biosynthesis

机译:靶向类异戊二烯生物合成的化学免疫治疗性抗疟药

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We synthesized 30 lipophilic bisphosphonates and tested them in malaria parasite killing (targeting parasite geranylgeranyl diphosphate synthase, GGPPS) and human γδ T cell activation (targeting human farnesyl diphosphate synthase, FPPS). Similar patterns of activity were seen in inhibiting human FPPS and Plasmodium GGPPS, with short to medium chain- length species having most activity. In cells, shorter chain-length species had low activity, due to poor membrane permeability, and longer chain length species were poor enzyme inhibitors. Optimal activity was thus seen with ~C10 side-chains, which have the best combination of enzyme inhibition and cell penetration. We also solved the crystal structure of one potent inhibitor, bound to FPPS. The results are of interest since they suggest the possibility of a combined chemo/immuno-therapeutic approach to antimalarial development in which both direct parasite killing and γδ T cell activation can be achieved with a single compound.
机译:我们合成了30个亲脂性双膦酸盐,并在疟疾寄生虫杀死(靶向寄生虫香叶基Geranylgeranyl二磷酸合酶,GGPPS)和人类γδT细胞活化(靶向人类法呢基二磷酸合酶,FPPS)中进行了测试。在抑制人FPPS和疟原虫GGPPS中看到了相似的活性模式,其中短至中链长度的物种具有最大的活性。在细胞中,较短的链长物种由于膜通透性差而具有较低的活性,而较长的链长物种则是较弱的酶抑制剂。因此,在〜C10侧链上观察到了最佳活性,该侧链具有酶抑制和细胞渗透的最佳组合。我们还解决了一种与FPPS结合的有效抑制剂的晶体结构。该结果令人感兴趣,因为它们暗示了化学/免疫治疗相结合的抗疟疾发展方法的可能性,在该方法中,可以通过单一化合物实现直接的寄生虫杀伤和γδT细胞活化。

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