Plasmodium falciparum Parasites Are Killed by a Transition State Analogue of Purine Nucleoside Phosphorylase in a Primate Animal Model

被引:57
作者
Cassera, Maria B. [1 ]
Hazleton, Keith Z. [1 ]
Merino, Emilio F. [1 ]
Obaldia, Nicanor, III [2 ]
Ho, Meng-Chiao [1 ]
Murkin, Andrew S. [1 ,6 ]
DePinto, Richard [3 ]
Gutierrez, Jemy A. [1 ]
Almo, Steven C. [1 ]
Evans, Gary B. [4 ]
Babu, Yarlagadda S. [5 ]
Schramm, Vern L. [1 ]
机构
[1] Yeshiva Univ, Albert Einstein Coll Med, Dept Biochem, Bronx, NY USA
[2] Gorgas Mem Inst Hlth Studies, Malaria Drug & Vaccine Evaluat Ctr, Panama City, Panama
[3] Waters Corp, Parsippany, NJ USA
[4] Ind Res Ltd, Carbohydrate Chem Grp, Lower Hutt, New Zealand
[5] BioCryst Pharmaceut Inc, Dept Biol Sci, Birmingham, AL USA
[6] SUNY Buffalo, Dept Chem, Buffalo, NY 14260 USA
来源
PLOS ONE | 2011年 / 6卷 / 11期
关键词
MALARIA PARASITES; PLASMA-MEMBRANE; IN-VITRO; METABOLISM; INHIBITORS; ENZYME; SUSCEPTIBILITY; HYPOXANTHINE; ARTEMISININ; COMBINATION;
D O I
10.1371/journal.pone.0026916
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Plasmodium falciparum causes most of the one million annual deaths from malaria. Drug resistance is widespread and novel agents against new targets are needed to support combination-therapy approaches promoted by the World Health Organization. Plasmodium species are purine auxotrophs. Blocking purine nucleoside phosphorylase (PNP) kills cultured parasites by purine starvation. DADMe-Immucillin-G (BCX4945) is a transition state analogue of human and Plasmodium PNPs, binding with picomolar affinity. Here, we test BCX4945 in Aotus primates, an animal model for Plasmodium falciparum infections. Oral administration of BCX4945 for seven days results in parasite clearance and recrudescence in otherwise lethal infections of P. falciparum in Aotus monkeys. The molecular action of BCX4945 is demonstrated in crystal structures of human and P. falciparum PNPs. Metabolite analysis demonstrates that PNP blockade inhibits purine salvage and polyamine synthesis in the parasites. The efficacy, oral availability, chemical stability, unique mechanism of action and low toxicity of BCX4945 demonstrate potential for combination therapies with this novel antimalarial agent.
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页数:12
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