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PMID: 20351271 Published · ppublish English Journal Article Research Support, N.I.H., Extramural Research Support, Non-U.S. Gov't

Phosphate-activated glutaminase (GLS2), a p53-inducible regulator of glutamine metabolism and reactive oxygen species.

Suzuki S, Tanaka T, Poyurovsky MV, Nagano H, Mayama T, Ohkubo S, Lokshin M, Hosokawa H, Nakayama T, Suzuki Y, Sugano S, Sato E, Nagao T, Yokote K, Tatsuno I, Prives C

Abstract

We identified a p53 target gene, phosphate-activated mitochondrial glutaminase (GLS2), a key enzyme in conversion of glutamine to glutamate, and thereby a regulator of glutathione (GSH) synthesis and energy production. GLS2 expression is induced in response to DNA damage or oxidative stress in a p53-dependent manner, and p53 associates with the GLS2 promoter. Elevated GLS2 facilitates glutamine metabolism and lowers intracellular reactive oxygen species (ROS) levels, resulting in an overall decrease in DNA oxidation as determined by measurement of 8-OH-dG content in both normal and stressed cells. Further, siRNA down-regulation of either GLS2 or p53 compromises the GSH-dependent antioxidant system and increases intracellular ROS levels. High ROS levels following GLS2 knockdown also coincide with stimulation of p53-induced cell death. We propose that GLS2 control of intracellular ROS levels and the apoptotic response facilitates the ability of p53 to protect cells from accumulation of genomic damage and allows cells to survive after mild and repairable genotoxic stress. Indeed, overexpression of GLS2 reduces the growth of tumor cells and colony formation. Further, compared with normal tissue, GLS2 expression is reduced in liver tumors. Thus, our results provide evidence for a unique metabolic role for p53, linking glutamine metabolism, energy, and ROS homeostasis, which may contribute to p53 tumor suppressor function.

MeSH Terms
Animals Antioxidants/metabolism Apoptosis Glutaminase/metabolism Glutamine/metabolism Glutathione/metabolism Humans Mice Mitochondria/metabolism Oligonucleotide Array Sequence Analysis Promoter Regions, Genetic RNA Interference Reactive Oxygen Species Tumor Suppressor Protein p53/metabolism
Chemicals
Antioxidants Reactive Oxygen Species TP53 protein, human Tumor Suppressor Protein p53 Glutamine Glutaminase Glutathione
Authors & Affiliations
16 authors, click to expand affiliations / ORCID
Suzuki Sawako
Department of Clinical Cell Biology and Division of Endocrinology and Metabolism, Chiba University Graduate School of Medicine, Chiba-shi, Chiba 260-8670, Japan.
Tanaka Tomoaki
Poyurovsky Masha V
Nagano Hidekazu
Mayama Takafumi
Ohkubo Shuichi
Lokshin Maria
Hosokawa Hiroyuki
Nakayama Toshinori
Suzuki Yutaka
Sugano Sumio
Sato Eiichi
Nagao Toshitaka
Yokote Koutaro
Tatsuno Ichiro
Prives Carol
References (36)
36 references, click to expand
  1. Glycolytic enzymes can modulate cellular life span.
    Cancer Res. 2005 Jan 1;65(1):177-85 PMID: 15665293
  2. Loss of p53 causes mitochondrial DNA depletion and altered mitochondrial reactive oxygen species homeostasis.
    Biochim Biophys Acta. 2009 May;1787(5):328-34 PMID: 19413947
  3. Antisense glutaminase inhibition decreases glutathione antioxidant capacity and increases apoptosis in Ehrlich ascitic tumour cells.
    Eur J Biochem. 2004 Nov;271(21):4298-306 PMID: 15511236
  4. The contribution of endogenous sources of DNA damage to the multiple mutations in cancer.
    Mutat Res. 2001 Jun 2;477(1-2):7-21 PMID: 11376682
  5. p53 and metabolism: Inside the TIGAR.
    Cell. 2006 Jul 14;126(1):30-2 PMID: 16839873
  6. Glutamine and its relationship with intracellular redox status, oxidative stress and cell proliferation/death.
    Int J Biochem Cell Biol. 2002 May;34(5):439-58 PMID: 11906817
  7. Assessment of mitochondrial oxidative phosphorylation in patient muscle biopsies, lymphoblasts, and transmitochondrial cell lines.
    Methods Enzymol. 1996;264:484-509 PMID: 8965721
  8. The tumor suppressor p53 down-regulates glucose transporters GLUT1 and GLUT4 gene expression.
    Cancer Res. 2004 Apr 1;64(7):2627-33 PMID: 15059920
  9. Brick by brick: metabolism and tumor cell growth.
    Curr Opin Genet Dev. 2008 Feb;18(1):54-61 PMID: 18387799
  10. p53 and metabolism.
    Nat Rev Cancer. 2009 Oct;9(10):691-700 PMID: 19759539
  11. p53 is a transcriptional activator of the muscle-specific phosphoglycerate mutase gene and contributes in vivo to the control of its cardiac expression.
    Cell Growth Differ. 1999 May;10(5):295-306 PMID: 10359011
  12. Tumor cell metabolism: cancer's Achilles' heel.
    Cancer Cell. 2008 Jun;13(6):472-82 PMID: 18538731
  13. The antioxidant function of the p53 tumor suppressor.
    Nat Med. 2005 Dec;11(12):1306-13 PMID: 16286925
  14. Mitochondrial metabolism of glutamine and glutamate and its physiological significance.
    Physiol Rev. 1983 Apr;63(2):547-605 PMID: 6132422
  15. On the origin of cancer cells.
    Science. 1956 Feb 24;123(3191):309-14 PMID: 13298683
  16. p53 regulates mitochondrial respiration.
    Science. 2006 Jun 16;312(5780):1650-3 PMID: 16728594
  17. Hepatic glutaminase expression: relationship to kidney-type glutaminase and to the urea cycle.
    FASEB J. 1993 Dec;7(15):1468-74 PMID: 8262331
  18. Regulation of glutaminase activity and glutamine metabolism.
    Annu Rev Nutr. 1995;15:133-59 PMID: 8527215
  19. p53 regulates mtDNA copy number and mitocheckpoint pathway.
    J Carcinog. 2009;8:8 PMID: 19439913
  20. Glutathione turnover in cultured astrocytes: studies with [15N]glutamate.
    J Neurochem. 1990 Jul;55(1):137-45 PMID: 1972386
  21. Evidence that glutamine, not sugar, is the major energy source for cultured HeLa cells.
    J Biol Chem. 1979 Apr 25;254(8):2669-76 PMID: 429309
  22. Identification of seven genes regulated by wild-type p53 in a colon cancer cell line carrying a well-controlled wild-type p53 expression system.
    Oncol Res. 1999;11(6):281-5 PMID: 10691030
  23. Regeneration of peroxiredoxins by p53-regulated sestrins, homologs of bacterial AhpD.
    Science. 2004 Apr 23;304(5670):596-600 PMID: 15105503
  24. p53: new roles in metabolism.
    Trends Cell Biol. 2007 Jun;17(6):286-91 PMID: 17481900
  25. Novel form of phosphate activated glutaminase in cultured astrocytes and human neuroblastoma cells, PAG in brain pathology and localization in the mitochondria.
    Neurochem Res. 2008 Jul;33(7):1341-5 PMID: 18274897
  26. Mutation of RRM2B, encoding p53-controlled ribonucleotide reductase (p53R2), causes severe mitochondrial DNA depletion.
    Nat Genet. 2007 Jun;39(6):776-80 PMID: 17486094
  27. Hexokinase II: cancer's double-edged sword acting as both facilitator and gatekeeper of malignancy when bound to mitochondria.
    Oncogene. 2006 Aug 7;25(34):4777-86 PMID: 16892090
  28. Co-expression of glutaminase K and L isoenzymes in human tumour cells.
    Biochem J. 2005 Mar 15;386(Pt 3):535-42 PMID: 15496140
  29. The effect of glutamine on A549 cells exposed to moderate hyperoxia.
    Biochim Biophys Acta. 2004 Mar 2;1688(2):112-20 PMID: 14990341
  30. Understanding the Warburg effect: the metabolic requirements of cell proliferation.
    Science. 2009 May 22;324(5930):1029-33 PMID: 19460998
  31. Molecular cloning, sequencing and expression studies of the human breast cancer cell glutaminase.
    Biochem J. 2000 Jan 15;345 Pt 2:365-75 PMID: 10620514
  32. Glutathione and its role in cellular functions.
    Free Radic Biol Med. 1999 Nov;27(9-10):916-21 PMID: 10569624
  33. Identification of ALDH4 as a p53-inducible gene and its protective role in cellular stresses.
    J Hum Genet. 2004;49(3):134-140 PMID: 14986171
  34. Activation of p53 by oxidative stress involves platelet-derived growth factor-beta receptor-mediated ataxia telangiectasia mutated (ATM) kinase activation.
    J Biol Chem. 2003 Oct 10;278(41):39527-33 PMID: 12890678
  35. c-Myc suppression of miR-23a/b enhances mitochondrial glutaminase expression and glutamine metabolism.
    Nature. 2009 Apr 9;458(7239):762-5 PMID: 19219026
  36. TIGAR, a p53-inducible regulator of glycolysis and apoptosis.
    Cell. 2006 Jul 14;126(1):107-20 PMID: 16839880
Article Info
Journal
Proceedings of the National Academy of Sciences of the United States of America
Abbr.
Proc Natl Acad Sci U S A
ISSN
1091-6490
Published
2010-04-20
Epub
2010-00-29
Pages
7461-6
Language
English
Region
United States
NLM ID
7505876
PMCID
PMC2867754
Subset
IM
Grants
NCI NIH HHS · P01 CA087497 · United States
NCI NIH HHS · R01 CA077742 · United States
NCI NIH HHS · CA87497 · United States
NCI NIH HHS · CA77742 · United States
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