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February 25, 2026Clinical Cancer Research2 citations

A novel potent and selective GCN2 inhibitor, APL-4098, has anti-leukemic activity through dysregulation of mitochondrial function

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MRMónica Román-TruferoGWGavin A. WhitlockCSClaire Seydoux

Key Points

  • To evaluate the anti-leukemic effects of APL-4098, a GCN2 inhibitor, on acute myeloid leukemia cells.
  • Assessed potency and selectivity of APL-4098 using biochemical and cell-based assays.
  • Evaluated anti-leukemic effects ex vivo in primary AML patient cells and in vivo using xenograft models.
  • Examined synergy between APL-4098 and venetoclax in patient-derived xenografts.
  • Conducted RNA sequencing and metabolic assays to investigate mechanism of action.
  • APL-4098 exhibited nanomolar-range potency and high selectivity for GCN2.
  • Demonstrated strong anti-proliferative activity in primary AML patient cells and achieved 98% tumor growth inhibition in AML xenografts.
  • Preferentially depleted leukemia stem cells and reduced leukemia burden significantly in combination with venetoclax.
  • Induced dysregulation of mitochondrial function and triggered the mitochondrial unfolded protein response.

Abstract

Abstract Purpose: GCN2, one of the four kinases that activate the Integrated Stress Response to maintain proteostasis, has been shown to support cancer cell growth and survival in multiple preclinical cancer models. Acute myeloid leukemia (AML) is an aggressive hematological malignancy with dismal prognosis and high relapse rates that is marked by a dependency on finely tuned proteostasis. Here, we investigate the anti-leukemic potential of a new small-molecule GCN2 inhibitor, APL-4098. Experimental design: selectivity and potency of APL-4098 were assessed using biochemical and cell-based assays. Anti-leukemic effects were evaluated ex vivo in primary patient-derived AML and in vivo using cell line-derived (CDX) and patient-derived (PDX) xenograft models. Synergy of APL-4098 and venetoclax was examined in the PDX. RNA sequencing and metabolic assays were used to explore APL-4098 mechanism of action. Results: APL-4098 exhibited nanomolar-range potency against and high selectivity for GCN2. APL-4098 showed strong anti-proliferative activity ex vivo across two independent cohorts of primary AML patient cells, including cytotoxic effects on the leukemia stem cells (LSCs) and in vivo, achieving 98% tumor growth inhibition in an AML CDX. In a PDX, APL-4098 preferentially depleted the LSC-enriched compartment and, in combination with venetoclax, reduced leukemia burden by over 98%. Transcriptomic and metabolic analyses revealed APL-4098 compromises mitochondrial function and elicits the mitochondrial unfolded protein response. Conclusions: APL-4098 is a novel, potent and selective GCN2 inhibitor with strong preclinical efficacy against AML cells, including LSCs. Our findings support APL-4098 as a promising candidate for AML treatment.

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Cite This Study

Román-Trufero et al. (2026) studied this question.

synapsesocial.com/papers/699e920af5123be5ed050075https://doi.org/10.1158/1078-0432.ccr-25-1444
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