Mefloquine targets the Plasmodium falciparum 80S ribosome to inhibit protein synthesis
File(s)1857_2_merged_1485963121.pdf (6.75 MB)
Accepted version
Author(s)
Type
Journal Article
Abstract
Malaria control is heavily dependent on chemotherapeutic agents for disease prevention and drug treatment. Defining the mechanism of action for licensed drugs, for which no target is characterized, is critical to the development of their second-generation derivatives to improve drug potency towards inhibition of their molecular targets. Mefloquine is a widely used antimalarial without a known mode of action. Here, we demonstrate that mefloquine is a protein synthesis inhibitor. We solved a 3.2 Å electron cryo-microscopy structure of the Plasmodium falciparum 80S-ribosome with the (+)-mefloquine enantiomer bound to the ribosome GTPase-associated center. Mutagenesis of mefloquine-binding residues generates parasites with increased resistance, confirming the parasite-killing mechanism. Furthermore, structure-guided derivatives with an altered piperidine group, predicted to improve binding, show enhanced parasiticidal effect. These data reveal one possible mode of action for mefloquine and demonstrate the vast potential of cryo-EM to guide the development of mefloquine derivatives to inhibit parasite protein synthesis.
Date Issued
2017-03-13
Date Acceptance
2017-02-07
Citation
Nature Microbiology, 2017, 2, pp.1-9
ISSN
2058-5276
Publisher
Nature Publishing Group
Start Page
1
End Page
9
Journal / Book Title
Nature Microbiology
Volume
2
Copyright Statement
Copyright © 2017, Rights Managed by Nature Publishing Group
Sponsor
Wellcome Trust
Wellcome Trust
Wellcome Trust
Identifier
https://www.nature.com/articles/nmicrobiol201731
Grant Number
100993/Z/13/Z
100993/Z/13/Z
105686
Subjects
Science & Technology
Life Sciences & Biomedicine
Microbiology
RESISTANCE
SUSCEPTIBILITY
IDENTIFICATION
ANTIMALARIALS
COMBINATION
REFINEMENT
RESOLUTION
INVASION
FEATURES
GENE
Antimalarials
Mefloquine
Plasmodium falciparum
Protein Biosynthesis
Protein Synthesis Inhibitors
Ribosomes
Ribosomes
Plasmodium falciparum
Mefloquine
Protein Synthesis Inhibitors
Antimalarials
Protein Biosynthesis
0605 Microbiology
1108 Medical Microbiology
Publication Status
Published
Article Number
17031
Date Publish Online
2017-03-13