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June 15, 2026ACS Chemical Biology1 citationsOpen Access

The Human Chk1 Inhibitor CHIR-124 Shows Multistage Activity against the Human Malaria Parasite Plasmodium falciparum via Polypharmacological Inhibition of Pf Ark1 and Hemozoin Formation

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KWKathryn J. WichtJWJohn G. WoodlandLGLarnelle F. Garnie

Key Points

  • The study aims to evaluate the effectiveness of the Chk1 inhibitor CHIR-124 against Plasmodium falciparum and its mechanisms of action.
  • Investigated in vitro activity of CHIR-124 against drug-sensitive and drug-resistant P. falciparum strains.
  • Conducted conditional knockdown experiments to identify target kinases involved in CHIR-124's activity.
  • Performed drug combination tests and morphological studies to explore the mechanism of action.
  • CHIR-124 competitively binds to Plasmodium kinases, significantly inhibiting parasite growth.
  • The compound showed dose-dependent inhibition of β-hematin formation, increasing free heme levels and correlating with decreased parasite viability.
  • Dual inhibition of Pf Ark1 and hemozoin formation was confirmed, indicating potential for reduced resistance development.

Abstract

High Resolution Image Download MS PowerPoint Slide The high burden of malaria and growing resistance to frontline antimalarials demand new drug target combinations with reduced propensities for conferring parasite resistance. An attractive approach for circumventing antimalarial drug resistance is target repurposing, in which known drugs that act through protein targets of human origin that are also active against the human malaria parasite Plasmodium falciparum are exploited to identify novel antimalarial drug targets. Here, we show that the human checkpoint kinase 1 (Chk1) inhibitor CHIR-124 is active in vitro against both drug-sensitive and drug-resistant asexual blood stage parasites and competitively binds to several Plasmodium kinases. The compound also shows moderate activity against both the liver and gametocyte forms of the parasite. Further target investigation of CHIR-124 via conditional knockdown experiments confirmed that P. falciparum Aurora-related kinase 1 ( Pf Ark1) is implicated in its parasiticidal activity. Notably, CHIR-124 also inhibits β-hematin (synthetic hemozoin) formation and causes a dose-dependent increase in free heme that correlates with inhibition of parasite growth. These findings suggest that polypharmacology is involved in the activity of CHIR-124 against P. falciparum via the dual inhibition of Plasmodium Pf Ark1 and hemozoin formation, both essential for parasite proliferation. This is further supported by in vitro drug combination experiments, morphological studies, and resistance generation attempts. This study validates the feasibility of dual Plasmodium kinase/hemozoin formation inhibitors active against resistant strains with decreased resistance risks in the fight against malaria.

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Cite This Study

Wicht et al. (2026) studied this question.

synapsesocial.com/papers/6a2f973ca1cfeec49082852fhttps://doi.org/10.1021/acschembio.6c00264
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