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Evidence for an Alternative Glycolytic Pathway in Rapidly Proliferating Cells

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Journal Science
Specialty Science
Date 2010 Sep 18
PMID 20847263
Citations 332
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Abstract

Proliferating cells, including cancer cells, require altered metabolism to efficiently incorporate nutrients such as glucose into biomass. The M2 isoform of pyruvate kinase (PKM2) promotes the metabolism of glucose by aerobic glycolysis and contributes to anabolic metabolism. Paradoxically, decreased pyruvate kinase enzyme activity accompanies the expression of PKM2 in rapidly dividing cancer cells and tissues. We demonstrate that phosphoenolpyruvate (PEP), the substrate for pyruvate kinase in cells, can act as a phosphate donor in mammalian cells because PEP participates in the phosphorylation of the glycolytic enzyme phosphoglycerate mutase (PGAM1) in PKM2-expressing cells. We used mass spectrometry to show that the phosphate from PEP is transferred to the catalytic histidine (His11) on human PGAM1. This reaction occurred at physiological concentrations of PEP and produced pyruvate in the absence of PKM2 activity. The presence of histidine-phosphorylated PGAM1 correlated with the expression of PKM2 in cancer cell lines and tumor tissues. Thus, decreased pyruvate kinase activity in PKM2-expressing cells allows PEP-dependent histidine phosphorylation of PGAM1 and may provide an alternate glycolytic pathway that decouples adenosine triphosphate production from PEP-mediated phosphotransfer, allowing for the high rate of glycolysis to support the anabolic metabolism observed in many proliferating cells.

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References
1.
Hitosugi T, Kang S, Vander Heiden M, Chung T, Elf S, Lythgoe K . Tyrosine phosphorylation inhibits PKM2 to promote the Warburg effect and tumor growth. Sci Signal. 2009; 2(97):ra73. PMC: 2812789. DOI: 10.1126/scisignal.2000431. View

2.
Zu X, Besant P, Imhof A, Attwood P . Mass spectrometric analysis of protein histidine phosphorylation. Amino Acids. 2007; 32(3):347-57. DOI: 10.1007/s00726-007-0493-4. View

3.
Hohenester U, Ludwig K, Krieglstein J, Konig S . Stepchild phosphohistidine: acid-labile phosphorylation becomes accessible by functional proteomics. Anal Bioanal Chem. 2010; 397(8):3209-12. DOI: 10.1007/s00216-009-3372-x. View

4.
Kondoh H, LLeonart M, Gil J, Wang J, Degan P, Peters G . Glycolytic enzymes can modulate cellular life span. Cancer Res. 2005; 65(1):177-85. View

5.
Blattler W, Knowles J . Phosphoglycerate mutases: stereochemical course of the phosphoryl group transfers catalyzed by the cofactor-dependent enzyme from rabbit muscle and the cofactor-independent enzyme from wheat germ. Biochemistry. 1980; 19(4):738-43. DOI: 10.1021/bi00545a020. View