Leann Tilley
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Articles (9)
Reaction hijacking of tyrosine tRNA synthetase as a new whole-of-life-cycle antimalarial strategy
Aminoacyl transfer RNA (tRNA) synthetases (aaRSs) are attractive drug targets, and we present class I and II aaRSs as previously unrecognized targets for adenosine 5′-monophosphate–mimicking nucleoside sulfamates. The target enzyme catalyzes the formation of an inhibitory amino acid–sulfamate conjugate through a reaction-hijacking mechanism. We identified adenosine 5′-sulfamate as a broad-specificity compound that hijacks a range of aaRSs and ML901 as a specific reagent that hijacks a single aaRS in the malaria parasite Plasmodium falciparum , namely tyrosine RS ( Pf YRS). ML901 exerts whole-life-cycle–killing activity with low nanomolar potency and single-dose efficacy in a mouse model of malaria. X-ray crystallographic studies of plasmodium and human YRSs reveal differential flexibility of a loop over the catalytic site that underpins differential susceptibility to reaction hijacking by ML901.
Year:
2022
Collaborators (8)
Michael W. Parker
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Audrey R. Odom John
Washington University School of Medicine
Vijay Rajagopal
Associate Professor
University of Melbourne
Stuart Ralph
Professor
University of Melbourne
Juan Nunez-Iglesias
MONASH UNIVERSITY
Simon Cobbold
Walter and Eliza Hall Institute of Medical Research
Michael Griffin
University of Melbourne
Dean Andrew
QIMR Berghofer Medical Research Institute

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