Glutaminolysis: a hallmark of cancer metabolism

L Yang, S Venneti, D Nagrath - Annual review of biomedical …, 2017 - annualreviews.org
L Yang, S Venneti, D Nagrath
Annual review of biomedical engineering, 2017annualreviews.org
Glutamine is the most abundant circulating amino acid in blood and muscle and is critical for
many fundamental cell functions in cancer cells, including synthesis of metabolites that
maintain mitochondrial metabolism; generation of antioxidants to remove reactive oxygen
species; synthesis of nonessential amino acids (NEAAs), purines, pyrimidines, and fatty
acids for cellular replication; and activation of cell signaling. In light of the pleiotropic role of
glutamine in cancer cells, a comprehensive understanding of glutamine metabolism is …
Glutamine is the most abundant circulating amino acid in blood and muscle and is critical for many fundamental cell functions in cancer cells, including synthesis of metabolites that maintain mitochondrial metabolism; generation of antioxidants to remove reactive oxygen species; synthesis of nonessential amino acids (NEAAs), purines, pyrimidines, and fatty acids for cellular replication; and activation of cell signaling. In light of the pleiotropic role of glutamine in cancer cells, a comprehensive understanding of glutamine metabolism is essential for the development of metabolic therapeutic strategies for targeting cancer cells. In this article, we review oncogene-, tumor suppressor–, and tumor microenvironment–mediated regulation of glutamine metabolism in cancer cells. We describe the mechanism of glutamine's regulation of tumor proliferation, metastasis, and global methylation. Furthermore, we highlight the therapeutic potential of glutamine metabolism and emphasize that clinical application of in vivo assessment of glutamine metabolism is critical for identifying new ways to treat patients through glutamine-based metabolic therapy.
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