Inhibiting Plasmodium cytochrome bc1: a complex issue

被引:86
作者
Barton, Victoria [1 ]
Fisher, Nicholas [2 ]
Biagini, Giancarlo A. [2 ]
Ward, Stephen A. [2 ]
O'Neill, Paul M. [1 ,3 ]
机构
[1] Univ Liverpool, Dept Chem, Liverpool L69 7ZD, Merseyside, England
[2] Univ Liverpool, Liverpool Sch Trop Med, Liverpool L3 5QA, Merseyside, England
[3] Univ Liverpool, Sch Biomed Sci, Dept Pharmacol & Therapeut, MRC Ctr Drug Safety Sci, Liverpool L69 3GE, Merseyside, England
关键词
MITOCHONDRIAL ELECTRON-TRANSPORT; ATOVAQUONE RESISTANCE; MOLECULAR-BASIS; Q-CYCLE; POTENTIAL ANTIMALARIALS; UBIQUINOL OXIDATION; FALCIPARUM; MUTATIONS; PARASITE; YEAST;
D O I
10.1016/j.cbpa.2010.05.005
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The cytochrome bc(1) complex is a key mitochondrial enzyme that catalyses transfer of electrons maintaining the membrane potential of mitochondria. Currently, atovaquone is the only drug in clinical use targeting the Plasmodium falciparum bc(1) complex. The rapid emergence of resistance to atovaquone resulted in a costly combination with proguanil (Malaronen (TM)), limiting its widespread use in resource-poor disease-endemic areas. Cheaper alternatives that can overcome resistance are desperately required. Here we describe recent advances of bc(1)-targeted inhibitors that include hydroxynaphthoquinones (atovaquone analogues), pyridones (clodipol analogues), acridine related compounds (acridinediones and acridones) and quinolones. Significantly, many of these developmental compounds demonstrate little cross resistance with atovaquone-resistant parasite strains, and selected classes have excellent oral activity profiles in rodent models of malaria.
引用
收藏
页码:440 / 446
页数:7
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