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Updated: Feb 16, 2026

Author Spotlight: Identification and Isolation of Quiescent Leukemia Stem Cells from Zebrafish T-ALL
Published on: July 19, 2024
Reprogramming of leukemic cell metabolism through the naphthoquinonic compound Quambalarine B
Karel Vališ1,2, Valéria Grobárová3, Lucie Hernychová1,3
1BIOCEV, Institute of Microbiology, v.v.i., The Czech Academy of Sciences, Vestec, Czech Republic.
Abstract:
Abnormalities in cancer metabolism represent potential targets for cancer therapy. We have recently identified a natural compound Quambalarine B (QB), which inhibits proliferation of several leukemic cell lines followed by cell death. We have predicted ubiquinone binding sites of mitochondrial respiratory complexes as potential molecular targets of QB in leukemia cells. Hence, we tracked the effect of QB on leukemia metabolism by applying several omics and biochemical techniques. We have confirmed the inhibition of respiratory complexes by QB and found an increase in the intracellular AMP levels together with respiratory substrates. Inhibition of mitochondrial respiration by QB triggered reprogramming of leukemic cell metabolism involving disproportions in glycolytic flux, inhibition of proteins O-glycosylation, stimulation of glycine synthesis pathway, and pyruvate kinase activity, followed by an increase in pyruvate and a decrease in lactate levels. Inhibition of mitochondrial complex I by QB suppressed folate metabolism as determined by a decrease in formate production. We have also observed an increase in cellular levels of several amino acids except for aspartate, indicating the dependence of Jurkat (T-ALL) cells on aspartate synthesis. These results indicate blockade of mitochondrial complex I and II activity by QB and reduction in aspartate and folate metabolism as therapeutic targets in T-ALL cells. Anti-cancer activity of QB was also confirmed during in vivo studies, suggesting the therapeutic potential of this natural compound.
Insights
Quambalarine B (QB) natural compound inhibits leukemia cell growth by targeting mitochondrial respiration. This compound shows therapeutic potential by blocking key metabolic pathways in T-ALL cells.
Area of Science:
- Biochemistry
- Cancer Biology
- Metabolomics
Background:
- Cancer cells exhibit altered metabolism, presenting therapeutic targets.
- Quambalarine B (QB) is a natural compound identified to inhibit leukemia cell proliferation.
Purpose of the Study:
- To investigate the molecular targets and metabolic effects of Quambalarine B (QB) in leukemia cells.
- To evaluate the anti-cancer activity of QB in vivo.
Main Methods:
- Omics techniques and biochemical assays were employed to track QB's effects on leukemia metabolism.
- Mitochondrial respiratory complexes and metabolic pathways were analyzed.
Main Results:
- QB inhibited mitochondrial respiratory complexes I and II, increasing intracellular AMP and respiratory substrates.
- QB treatment reprogrammed leukemic cell metabolism, affecting glycolysis, O-glycosylation, glycine synthesis, and pyruvate kinase activity.
- QB suppressed folate metabolism and altered amino acid synthesis, highlighting T-ALL cell dependence on aspartate.
Conclusions:
- Quambalarine B (QB) effectively blocks mitochondrial complex I and II activity, impacting aspartate and folate metabolism in T-ALL cells.
- QB demonstrates anti-cancer activity in vivo, suggesting its therapeutic potential for T-ALL treatment.
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