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Chemogenomics identifies acetyl-coenzyme A synthetase as a target for malaria treatment and prevention.


ABSTRACT: We identify the Plasmodium falciparum acetyl-coenzyme A synthetase (PfAcAS) as a druggable target, using genetic and chemical validation. In vitro evolution of resistance with two antiplasmodial drug-like compounds (MMV019721 and MMV084978) selects for mutations in PfAcAS. Metabolic profiling of compound-treated parasites reveals changes in acetyl-CoA levels for both compounds. Genome editing confirms that mutations in PfAcAS are sufficient to confer resistance. Knockdown studies demonstrate that PfAcAS is essential for asexual growth, and partial knockdown induces hypersensitivity to both compounds. In vitro biochemical assays using recombinantly expressed PfAcAS validates that MMV019721 and MMV084978 directly inhibit the enzyme by preventing CoA and acetate binding, respectively. Immunolocalization studies reveal that PfAcAS is primarily localized to the nucleus. Functional studies demonstrate inhibition of histone acetylation in compound-treated wild-type, but not in resistant parasites. Our findings identify and validate PfAcAS as an essential, druggable target involved in the epigenetic regulation of gene expression.

SUBMITTER: Summers RL 

PROVIDER: S-EPMC8878317 | biostudies-literature | 2022 Feb

REPOSITORIES: biostudies-literature

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Chemogenomics identifies acetyl-coenzyme A synthetase as a target for malaria treatment and prevention.

Summers Robert L RL   Pasaje Charisse Flerida A CFA   Pisco Joao P JP   Striepen Josefine J   Luth Madeline R MR   Kumpornsin Krittikorn K   Carpenter Emma F EF   Munro Justin T JT   Lin De   Plater Andrew A   Punekar Avinash S AS   Shepherd Andrew M AM   Shepherd Sharon M SM   Vanaerschot Manu M   Murithi James M JM   Rubiano Kelly K   Akidil Aslı A   Ottilie Sabine S   Mittal Nimisha N   Dilmore A Hazel AH   Won Madalyn M   Mandt Rebecca E K REK   McGowen Kerry K   Owen Edward E   Walpole Chris C   Llinás Manuel M   Lee Marcus C S MCS   Winzeler Elizabeth A EA   Fidock David A DA   Gilbert Ian H IH   Wirth Dyann F DF   Niles Jacquin C JC   Baragaña Beatriz B   Lukens Amanda K AK  

Cell chemical biology 20210803 2


We identify the Plasmodium falciparum acetyl-coenzyme A synthetase (PfAcAS) as a druggable target, using genetic and chemical validation. In vitro evolution of resistance with two antiplasmodial drug-like compounds (MMV019721 and MMV084978) selects for mutations in PfAcAS. Metabolic profiling of compound-treated parasites reveals changes in acetyl-CoA levels for both compounds. Genome editing confirms that mutations in PfAcAS are sufficient to confer resistance. Knockdown studies demonstrate tha  ...[more]

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