4.8 Article

Structural analysis of atovaquone-inhibited cytochrome bc1 complex reveals the molecular basis of antimalarial drug action

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NATURE COMMUNICATIONS
卷 5, 期 -, 页码 -

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NATURE PORTFOLIO
DOI: 10.1038/ncomms5029

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  1. German Research Foundation [CRC 746, CRC 992]
  2. Excellence Initiative of the German Federal Government [EXC 294 BIOSS]
  3. Excellence Initiative of the German State Government

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Atovaquone, a substituted hydroxynaphthoquinone, is a potent antimalarial drug that acts by inhibiting the parasite's mitochondrial cytochrome bc(1) complex (cyt bc(1)). Mutations in cyt bc(1) confer atovaquone resistance. Here we describe the X-ray structure of mitochondrial cyt bc1 from Saccharomyces cerevisiae with atovaquone bound in the catalytic Qo site, at 3.0-angstrom resolution. A polarized H-bond to His181 of the Rieske protein in cyt bc(1) traps the ionized hydroxyl group of the drug. Side chains of highly conserved cytochrome b residues establish multiple non-polar interactions with the napththoquinone group, whereas less-conserved residues are in contact with atovaquone's cyclohexyl-chlorophenyl tail. Our structural analysis reveals the molecular basis of atovaquone's broad target spectrum, species-specific efficacies and acquired resistances, and may aid drug development to control the spread of resistant parasites.

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