Cancer cell metabolism: The essential role of the nonessential amino acid, glutamine Journal Article


Authors: Zhang, J.; Pavlova, N. N.; Thompson, C. B.
Article Title: Cancer cell metabolism: The essential role of the nonessential amino acid, glutamine
Abstract: Biochemistry textbooks and cell culture experiments seem to be telling us two different things about the significance of external glutamine supply for mammalian cell growth and proliferation. Despite the fact that glutamine is a nonessential amino acid that can be synthesized by cells from glucose-derived carbons and amino acid-derived ammonia, most mammalian cells in tissue culture cannot proliferate or even survive in an environment that does not contain millimolar levels of glutamine. Not only are the levels of glutamine in standard tissue culture media at least ten-fold higher than other amino acids, but glutamine is also the most abundant amino acid in the human bloodstream, where it is assiduously maintained at approximately 0.5 mM through a combination of dietary uptake, de novo synthesis, and muscle protein catabolism. The complex metabolic logic of the proliferating cancer cells' appetite for glutamine—which goes far beyond satisfying their protein synthesis requirements—has only recently come into focus. In this review, we examine the diversity of biosynthetic and regulatory uses of glutamine and their role in proliferation, stress resistance, and cellular identity, as well as discuss the mechanisms that cells utilize in order to adapt to glutamine limitation. © 2017 The Authors
Keywords: proliferation; stress response; cancer; glutamine metabolism
Journal Title: EMBO Journal
Volume: 36
Issue: 10
ISSN: 0261-4189
Publisher: Wiley Blackwell  
Date Published: 2017-05-15
Start Page: 1302
End Page: 1315
Language: English
DOI: 10.15252/embj.201696151
PROVIDER: scopus
PMCID: PMC5430235
PUBMED: 28420743
DOI/URL:
Notes: Review -- Export Date: 2 June 2017 -- Source: Scopus
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  1. Ji Zhang
    6 Zhang
  2. Craig Bernie Thompson
    153 Thompson
  3. Natalya Nickolayevna Pavlova
    12 Pavlova