Glutamine to proline conversion is associated with response to glutaminase inhibition in breast cancer
Maria T Grinde1, Bylgja Hilmarsdottir2,3, Hanna Maja Tunset4
1Department of Circulation and Medical Imaging, Norwegian University of Science and Technology (NTNU), 7489, Trondheim, Norway. maria.t.grinde@ntnu.no.
Introduction:
Glutaminase inhibitors target cancer cells by blocking the conversion of glutamine to glutamate, thereby potentially interfering with anaplerosis and synthesis of amino acids and glutathione. The drug CB-839 has shown promising effects in preclinical experiments and is currently undergoing clinical trials in several human malignancies, including triple-negative breast cancer (TNBC). However, response to glutaminase inhibitors is variable and there is a need for identification of predictive response biomarkers. The aim of this study was to determine how glutamine is utilized in two patient-derived xenograft (PDX) models of breast cancer representing luminal-like/ER+ (MAS98.06) and basal-like/triple-negative (MAS98.12) breast cancer and to explore the metabolic effects of CB-839 treatment.
Experimental:
MAS98.06 and MAS98.12 PDX mice received CB-839 (200 mg/kg) or drug vehicle two times daily p.o. for up to 28 days (n = 5 per group), and the effect on tumor growth was evaluated. Expression of 60 genes and seven glutaminolysis key enzymes were determined using gene expression microarray analysis and immunohistochemistry (IHC), respectively, in untreated tumors. Uptake and conversion of glutamine were determined in the PDX models using HR MAS MRS after i.v. infusion of [5-13C] glutamine when the models had received CB-839 (200 mg/kg) or vehicle for 2 days (n = 5 per group).
Results:
Tumor growth measurements showed that CB-839 significantly inhibited tumor growth in MAS98.06 tumors, but not in MAS98.12 tumors. Gene expression and IHC analysis indicated a higher proline synthesis from glutamine in untreated MAS98.06 tumors. This was confirmed by HR MAS MRS of untreated tumors demonstrating that MAS98.06 used glutamine to produce proline, glutamate, and alanine, and MAS98.12 to produce glutamate and lactate. In both models, treatment with CB-839 resulted in accumulation of glutamine. In addition, CB-839 caused depletion of alanine, proline, and glutamate ([1-13C] glutamate) in the MAS98.06 model.
Conclusion:
Our findings indicate that TNBCs may not be universally sensitive to glutaminase inhibitors. The major difference in the metabolic fate of glutamine between responding MAS98.06 xenografts and non-responding MAS98.12 xenografts is the utilization of glutamine for production of proline. We therefore suggest that addiction to proline synthesis from glutamine is associated with response to CB-839 in breast cancer. The effect of glutaminase inhibition in two breast cancer patient-derived xenograft (PDX) models. 13C HR MAS MRS analysis of tumor tissue from CB-839-treated and untreated models receiving 13C-labeled glutamine ([5-13C] Gln) shows that the glutaminase inhibitor CB-839 is causing an accumulation of glutamine (arrow up) in two PDX models representing luminal-like breast cancer (MAS98.06) and basal-like breast cancer (MAS98.12). In MAS98.06 tumors, CB-839 is in addition causing depletion of proline ([5-13C] Pro), alanine ([1-13C] Ala), and glutamate ([1-13C] Glu), which could explain why CB-839 causes tumor growth inhibition in MAS98.06 tumors, but not in MAS98.12 tumors.
Insights
Glutaminase inhibitor CB-839 effectively reduced tumor growth in one breast cancer model by blocking glutamine conversion. Proline synthesis from glutamine is a key metabolic difference linked to response in breast cancer.
Area of Science:
- Metabolic pathways in cancer
- Cancer drug response biomarkers
Background:
- Glutaminase inhibitors target cancer metabolism by blocking glutamine to glutamate conversion.
- CB-839 is a glutaminase inhibitor showing preclinical promise, including in triple-negative breast cancer (TNBC).
- Variable response to glutaminase inhibitors necessitates predictive biomarker identification.
Purpose of the Study:
- To investigate glutamine utilization in two patient-derived xenograft (PDX) breast cancer models (luminal-like/ER+ MAS98.06 and basal-like/TNBC MAS98.12).
- To explore the metabolic effects of the glutaminase inhibitor CB-839 in these models.
Main Methods:
- CB-839 or vehicle treatment in MAS98.06 and MAS98.12 PDX mouse models.
- Tumor growth evaluation, gene expression, and immunohistochemistry (IHC) for key enzymes.
- Metabolic analysis using 13C-labeled glutamine and high-resolution magic angle spinning magnetic resonance spectroscopy (HR MAS MRS).
Main Results:
- CB-839 significantly inhibited tumor growth in MAS98.06 (luminal-like) but not MAS98.12 (basal-like/TNBC) models.
- MAS98.06 tumors showed higher proline synthesis from glutamine compared to MAS98.12.
- CB-839 treatment led to glutamine accumulation and depletion of proline, alanine, and glutamate in MAS98.06 tumors.
Conclusions:
- Triple-negative breast cancers (TNBCs) may not universally respond to glutaminase inhibitors.
- Glutamine utilization for proline production is a key metabolic difference between responding and non-responding xenografts.
- Addiction to proline synthesis from glutamine may be a predictive biomarker for CB-839 response in breast cancer.
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