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Dependence on glutamine uptake and glutamine addiction characterize myeloma cells: a new attractive target
Marina Bolzoni1, Martina Chiu2, Fabrizio Accardi3
1Myeloma Unit, Department of Clinical and Experimental Medicine, and.
Abstract:
The importance of glutamine (Gln) metabolism in multiple myeloma (MM) cells and its potential role as a therapeutic target are still unknown, although it has been reported that human myeloma cell lines (HMCLs) are highly sensitive to Gln depletion. In this study, we found that both HMCLs and primary bone marrow (BM) CD138(+) cells produced large amounts of ammonium in the presence of Gln. MM patients have lower BM plasma Gln with higher ammonium and glutamate than patients with indolent monoclonal gammopathies. Interestingly, HMCLs expressed glutaminase (GLS1) and were sensitive to its inhibition, whereas they exhibited negligible expression of glutamine synthetase (GS). High GLS1 and low GS expression were also observed in primary CD138(+) cells. Gln-free incubation or treatment with the glutaminolytic enzyme l-asparaginase depleted the cell contents of Gln, glutamate, and the anaplerotic substrate 2-oxoglutarate, inhibiting MM cell growth. Consistent with the dependence of MM cells on extracellular Gln, a gene expression profile analysis, on both proprietary and published datasets, showed an increased expression of the Gln transporters SNAT1, ASCT2, and LAT1 by CD138(+) cells across the progression of monoclonal gammopathies. Among these transporters, only ASCT2 inhibition in HMCLs caused a marked decrease in Gln uptake and a significant fall in cell growth. Consistently, stable ASCT2 downregulation by a lentiviral approach inhibited HMCL growth in vitro and in a murine model. In conclusion, MM cells strictly depend on extracellular Gln and show features of Gln addiction. Therefore, the inhibition of Gln uptake is a new attractive therapeutic strategy for MM.
Insights
Multiple myeloma cells rely heavily on glutamine (Gln) for growth. Inhibiting Gln uptake, particularly via ASCT2, offers a promising new therapeutic strategy for treating this blood cancer.
Area of Science:
- Hematology
- Cancer Metabolism
- Molecular Biology
Background:
- Glutamine (Gln) metabolism is critical in cancer, but its role in multiple myeloma (MM) remains unclear.
- Human myeloma cell lines (HMCLs) show sensitivity to Gln depletion, suggesting a potential therapeutic vulnerability.
Purpose of the Study:
- To investigate the significance of Gln metabolism and uptake in MM cells.
- To evaluate Gln transporters as potential therapeutic targets for MM.
Main Methods:
- Analysis of Gln, ammonium, and glutamate levels in MM cells and patient samples.
- Assessment of glutaminase (GLS1) and glutamine synthetase (GS) expression.
- Inhibition studies using GLS1 inhibitors and l-asparaginase.
- Gene expression profiling of Gln transporters (SNAT1, ASCT2, LAT1).
- Functional assays involving ASCT2 inhibition and downregulation.
Main Results:
- HMCLs and primary CD138(+) cells produce ammonium from Gln; MM patients exhibit altered Gln/ammonium/glutamate levels.
- MM cells express high GLS1 and low GS, and GLS1 inhibition impacts cell growth.
- Gln depletion or l-asparaginase treatment inhibits MM cell proliferation.
- MM cells upregulate Gln transporters SNAT1, ASCT2, and LAT1 during disease progression.
- ASCT2 inhibition significantly reduces Gln uptake and MM cell growth, both in vitro and in vivo.
Conclusions:
- Multiple myeloma cells exhibit 'Gln addiction,' strictly depending on extracellular Gln for survival and growth.
- Targeting Gln uptake, specifically through ASCT2 inhibition, represents a novel and attractive therapeutic strategy for MM.

