Abstract
Whereas cell cycle arrest, apoptosis, and senescence are traditionally thought of as the major functions of the tumor suppressor p53, recent studies revealed two unique functions for this protein: p53 regulates cellular energy metabolism and antioxidant defense mechanisms. Here, we identify glutaminase 2 (GLS2) as a previously uncharacterized p53 target gene to mediate these two functions of the p53 protein. GLS2 encodes a mitochondrial glutaminase catalyzing the hydrolysis of glutamine to glutamate. p53 increases the GLS2 expression under both nonstressed and stressed conditions. GLS2 regulates cellular energy metabolism by increasing production of glutamate and alpha-ketoglutarate, which in turn results in enhanced mitochondrial respiration and ATP generation. Furthermore, GLS2 regulates antioxidant defense function in cells by increasing reduced glutathione (GSH) levels and decreasing ROS levels, which in turn protects cells from oxidative stress (e.g., H(2)O(2))-induced apoptosis. Consistent with these functions of GLS2, the activation of p53 increases the levels of glutamate and alpha-ketoglutarate, mitochondrial respiration rate, and GSH levels and decreases reactive oxygen species (ROS) levels in cells. Furthermore, GLS2 expression is lost or greatly decreased in hepatocellular carcinomas and the overexpression of GLS2 greatly reduced tumor cell colony formation. These results demonstrated that as a unique p53 target gene, GLS2 is a mediator of p53's role in energy metabolism and antioxidant defense, which can contribute to its role in tumor suppression.
MeSH Terms
Adenosine Triphosphate/chemistry,metabolism
Antioxidants/metabolism
Cell Line, Tumor
Gene Expression Regulation
Gene Expression Regulation, Neoplastic
Genes, p53
Glutathione/metabolism
Humans
Hydrogen Peroxide/pharmacology
Ketoglutaric Acids/metabolism
Mitochondria/metabolism
Oxygen/chemistry
Reactive Oxygen Species
Transaminases/biosynthesis
Tumor Suppressor Protein p53/biosynthesis
Chemicals
Antioxidants
Ketoglutaric Acids
Reactive Oxygen Species
Tumor Suppressor Protein p53
Adenosine Triphosphate
Hydrogen Peroxide
Transaminases
glutamine-pyruvate aminotransferase
Glutathione
Oxygen
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Hu Wenwei
Cancer Institute of New Jersey, University of Medicine and Dentistry of New Jersey, New Brunswick, NJ 08903, USA.
Zhang Cen
Wu Rui
Sun Yvonne
Levine Arnold
Feng Zhaohui
References (25)
25 references, click to expand
-
p53 regulates mitochondrial respiration.
Science. 2006 Jun 16;312(5780):1650-3
PMID: 16728594
-
Cancer cell metabolism: Warburg and beyond.
Cell. 2008 Sep 5;134(5):703-7
PMID: 18775299
-
Regeneration of peroxiredoxins by p53-regulated sestrins, homologs of bacterial AhpD.
Science. 2004 Apr 23;304(5670):596-600
PMID: 15105503
-
Transfection with liver-type glutaminase cDNA alters gene expression and reduces survival, migration and proliferation of T98G glioma cells.
Glia. 2009 Jul;57(9):1014-23
PMID: 19062176
-
Blinded by the Light: The Growing Complexity of p53.
Cell. 2009 May 1;137(3):413-31
PMID: 19410540
-
Genomic organization and transcriptional analysis of the human l-glutaminase gene.
Biochem J. 2003 Mar 15;370(Pt 3):771-84
PMID: 12444921
-
Anoxia induces macrophage inhibitory cytokine-1 (MIC-1) in glioblastoma cells independently of p53 and HIF-1.
Oncogene. 2002 Jun 20;21(27):4212-9
PMID: 12082608
-
The p53MH algorithm and its application in detecting p53-responsive genes.
Proc Natl Acad Sci U S A. 2002 Jun 25;99(13):8467-72
PMID: 12077306
-
Expression of the scaffolding PDZ protein glutaminase-interacting protein in mammalian brain.
J Neurosci Res. 2008 Feb 1;86(2):281-92
PMID: 17847083
-
ROS as signalling molecules: mechanisms that generate specificity in ROS homeostasis.
Nat Rev Mol Cell Biol. 2007 Oct;8(10):813-24
PMID: 17848967
-
The antioxidant function of the p53 tumor suppressor.
Nat Med. 2005 Dec;11(12):1306-13
PMID: 16286925
-
p53 tumor suppressor protein regulates the levels of huntingtin gene expression.
Oncogene. 2006 Jan 5;25(1):1-7
PMID: 16278683
-
The P53 pathway: what questions remain to be explored?
Cell Death Differ. 2006 Jun;13(6):1027-36
PMID: 16557269
-
Chromium(VI) enhances (+/-)-anti-7beta,8alpha-dihydroxy-9alpha,10alpha-epoxy-7,8,9,10-tetrahydrobenzo[a]pyrene-induced cytotoxicity and mutagenicity in mammalian cells through its inhibitory effect on nucleotide excision repair.
Biochemistry. 2004 Nov 9;43(44):14282-9
PMID: 15518579
-
p53: new roles in metabolism.
Trends Cell Biol. 2007 Jun;17(6):286-91
PMID: 17481900
-
The regulation of AMPK beta1, TSC2, and PTEN expression by p53: stress, cell and tissue specificity, and the role of these gene products in modulating the IGF-1-AKT-mTOR pathways.
Cancer Res. 2007 Apr 1;67(7):3043-53
PMID: 17409411
-
The coordinate regulation of the p53 and mTOR pathways in cells.
Proc Natl Acad Sci U S A. 2005 Jun 7;102(23):8204-9
PMID: 15928081
-
Transcriptional activation of the human glutathione peroxidase promoter by p53.
J Biol Chem. 1999 Apr 23;274(17):12061-6
PMID: 10207030
-
Declining p53 function in the aging process: a possible mechanism for the increased tumor incidence in older populations.
Proc Natl Acad Sci U S A. 2007 Oct 16;104(42):16633-8
PMID: 17921246
-
Expression of functional human glutaminase in baculovirus system: affinity purification, kinetic and molecular characterization.
Int J Biochem Cell Biol. 2007;39(4):765-73
PMID: 17267261
-
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
-
Definition of a consensus binding site for p53.
Nat Genet. 1992 Apr;1(1):45-9
PMID: 1301998
-
p53 regulates maternal reproduction through LIF.
Nature. 2007 Nov 29;450(7170):721-4
PMID: 18046411
-
c-Myc suppression of miR-23a/b enhances mitochondrial glutaminase expression and glutamine metabolism.
Nature. 2009 Apr 9;458(7239):762-5
PMID: 19219026
-
TIGAR, a p53-inducible regulator of glycolysis and apoptosis.
Cell. 2006 Jul 14;126(1):107-20
PMID: 16839880