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.

Blood
|June 9, 2016
PubMed

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.