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June 27, 2026ACS Infectious Diseases0 citationsOpen Access

Using Unbiased Chemical Proteomics Approaches to Explore the Target Landscape of the Resistance Refractory 7-Azaindole MMV022224 in Plasmodium falciparum

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ASAisha J. SyedUniversity of DundeeRMRachel MilneUniversity of DundeeVCVictoriano Corpas-LopezUniversity of Dundee

Key Points

  • The aim is to investigate the target landscape of MMV022224, an antimalarial with a unique mechanism of action.
  • Utilized chemical pulldown and thermal proteome profiling to identify protein targets.
  • Conducted enzymatic studies to assess the inhibitory effects on Pf PK6 and other kinases.
  • MMV022224 selectively binds to Pf PK6 and several Plasmodium kinases.
  • Inhibition of Pf PK6 alone does not account for the compound's antimalarial activity.
  • TCMDC-135051, another azaindole, is identified as a selective inhibitor of Pf CLK3.

Abstract

High Resolution Image Download MS PowerPoint Slide Current standard of care, artemisinin-based therapies for malaria, are threatened by emerging drug resistance. Developing antimalarials with novel mechanisms of action and low propensity for resistance is of the highest priority. Here, we explore the target landscape of MMV022224, a promising antimalarial that is active against multiple stages of Plasmodium falciparum and refractory to resistance generation. Using two orthogonal chemical proteomics approaches, chemical pulldown and thermal proteome profiling, we demonstrate that MMV022224 binds selectively and with high affinity to the genetically essential P. falciparum protein kinase 6 ( Pf PK6), as well as to several additional Plasmodium kinases. Enzymatic studies verify that MMV022224 inhibits Pf PK6; however, Pf PK6 knockdown does not affect parasite compound susceptibility, confirming that Pf PK6 inhibition is not the sole driver of antimalarial activity and that MMV022224 may act through broader, kinase-focused polypharmacology. Employing the same chemical proteomics strategies, we demonstrate that the structurally related azaindole, TCMDC-135051, is a selective inhibitor of the cyclin-dependent kinase Pf CLK3. Collectively, these studies demonstrate the value of chemical proteomics for antimalarial drug target deconvolution.

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Cite This Study

Syed et al. (2026) studied this question.

synapsesocial.com/papers/6a3f6972aea7db3c195404c7https://doi.org/10.1021/acsinfecdis.6c00276
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