Genetic and Drug Inhibition of LDH-A: Effects on Murine Gliomas

Masatomo Maeda1,2,3, Myat Ko1,2,4, Mayuresh M Mane1,2,5

  • 1Department of Neurology, Memorial Sloan Kettering Cancer Center, New York, NY 10065, USA.

Cancers
|May 14, 2022
PubMed

Insights

Inhibiting lactate dehydrogenase-A (LDH-A) in glioma cells did not universally slow tumor growth. Instead, it unexpectedly increased aggressiveness in some glioma models by activating alternative metabolic pathways.

Area of Science:

  • Cancer Biology
  • Metabolic Pathways
  • Neuro-Oncology

Background:

  • Lactate dehydrogenase-A (LDH-A) is crucial for glycolysis and cancer cell metabolism.
  • Targeting LDH-A is a potential strategy for inhibiting glioma growth.
  • The role of LDH-A and its interplay with LDH-B in glioma metabolism is not fully understood.

Purpose of the Study:

  • To investigate the effects of LDH-A depletion on murine glioma cell lines and intracranial tumors.
  • To compare genetic (shRNA knockdown) and pharmacologic (GNE-R-140) inhibition of LDH-A.
  • To elucidate the metabolic adaptations and their impact on tumor aggressiveness and survival.

Main Methods:

  • Utilized shRNA knockdown to deplete LDH-A in three murine glioma cell lines (GL261, CT2A, ALTS1C1).
  • Administered GNE-R-140, a pharmacologic inhibitor of the LDH enzyme complex.
  • Assessed tumor cell metabolism (ECAR, OCR), tumor growth, and animal survival.
  • Analyzed bioenergetic profiles under nutrient limitations and lactate supplementation.

Main Results:

  • LDH-A knockdown and GNE-R-140 showed similar effects on tumor metabolism, growth, and survival.
  • Aggressiveness of GL261 intracranial gliomas unexpectedly increased with LDH-A inhibition, unlike CT2A and ALTS1C1.
  • GL261 cells with LDH-A knockdown upregulated LDH-B, enabling lactate metabolism and increased proliferation in glucose-free media.
  • Exogenous pyruvate was not a major carbon source for native GL261 cells' TCA cycle.

Conclusions:

  • Inhibition of LDH-A/glycolysis is not a universally effective strategy for all gliomas due to complex metabolic interactions.
  • Upregulation of LDH-B in LDH-A depleted cells can lead to alternative metabolic pathway activation (e.g., lipid metabolism).
  • Metabolic-inhibition strategies require careful assessment to avoid unintended consequences like enhanced tumor aggressiveness.

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