A potent and selective reaction hijacking inhibitor of Plasmodium falciparum tyrosine tRNA synthetase exhibits single dose oral efficacy in vivo
Tilley, L.; Xie, S. C.; Tai, C.-W.; Morton, C. J.; Ma, L.; Huang, S.-C.; Wittlin, S.; Du, Y.; Hu, Y.; Dogovski, C.; Salimimarand, M.; Griffin, R.; England, D.; de la Curz, E.; Deni, I.; Yeo, T.; Burkhard, A. Y.; Striepen, J.; Schindler, K. A.; Crespo, B.; Gamo, F. J.; Khandokar, Y.; Hutton, C. A.; Rabie, T.; Birkholtz, L.-M.; Famodimu, M. T.; Delves, M. J.; Bolsher, J.; Koolen, K. M. J.; van der Laak, R.; Aguiar, A. C. C.; Pereira, D. B.; Creek, D. J.; Fidock, D. A.; Dick, L. R.; Brand, S. L.; Gould, A. E.; Langston, S.; Griffin, M. D. W.
Show abstract
The Plasmodium falciparum cytoplasmic tyrosine tRNA synthetase (PfTyrRS) is an attractive drug target that is susceptible to reaction-hijacking by AMP-mimicking nucleoside sulfamates. We previously identified an exemplar pyrazolopyrimidine ribose sulfamate, ML901, as a potent pro-inhibitor of PfTyrRS. Here we examined the stage specificity of action of ML901, showing very good activity against the schizont stage, but lower trophozoite stage activity. We explored a series of ML901 analogues and identified ML471, which exhibits improved potency against trophozoites and enhanced selectivity against a human cell line. Additionally, it has no inhibitory activity against human ubiquitin-activating enzyme (UAE) in vitro. ML471 exhibits low nanomolar activity against asexual blood stage P. falciparum and potent activity against liver stage parasites, gametocytes and transmissible gametes. It is fast-acting and exhibits a long in vivo half-life. ML471 is well-tolerated and shows single dose oral efficacy in the SCID mouse model of P. falciparum malaria. We confirm that ML471 is a pro-inhibitor that is converted into a tight binding Tyr-ML471 conjugate by the PfTyrRS enzyme. A crystal structure of the PfTyrRS/ Tyr-ML471 complex offers insights into improved potency, while molecular docking into UAE provides a rationale for improved selectivity.
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