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PMID: 16465194 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Expression of transketolase TKTL1 predicts colon and urothelial cancer patient survival: Warburg effect reinterpreted.

British journal of cancer ·Vol. 94 ·No. 4 ·2006-02-27 ·Pages 578-85

Langbein S, Zerilli M, Zur Hausen A, Staiger W, Rensch-Boschert K, Lukan N, Popa J, Ternullo MP, Steidler A, Weiss C, Grobholz R, Willeke F, Alken P, Stassi G, Schubert P, Coy JF

Abstract

Tumours ferment glucose to lactate even in the presence of oxygen (aerobic glycolysis; Warburg effect). The pentose phosphate pathway (PPP) allows glucose conversion to ribose for nucleic acid synthesis and glucose degradation to lactate. The nonoxidative part of the PPP is controlled by transketolase enzyme reactions. We have detected upregulation of a mutated transketolase transcript (TKTL1) in human malignancies, whereas transketolase (TKT) and transketolase-like-2 (TKTL2) transcripts were not upregulated. Strong TKTL1 protein expression was correlated to invasive colon and urothelial tumours and to poor patients outcome. TKTL1 encodes a transketolase with unusual enzymatic properties, which are likely to be caused by the internal deletion of conserved residues. We propose that TKTL1 upregulation in tumours leads to enhanced, oxygen-independent glucose usage and a lactate-based matrix degradation. As inhibition of transketolase enzyme reactions suppresses tumour growth and metastasis, TKTL1 could be the relevant target for novel anti-transketolase cancer therapies. We suggest an individualised cancer therapy based on the determination of metabolic changes in tumours that might enable the targeted inhibition of invasion and metastasis.

MeSH Terms
Adenocarcinoma/genetics,mortality,physiopathology Aged Colonic Neoplasms/genetics,mortality,physiopathology Female Gene Expression Profiling Glycolysis Humans Male Middle Aged Neoplasm Invasiveness Neoplasm Metastasis Predictive Value of Tests Prognosis Survival Analysis Transketolase/biosynthesis Up-Regulation Urinary Bladder Neoplasms/genetics,mortality,physiopathology
Chemicals
TKTL1 protein, human Transketolase
Authors & Affiliations
16 authors, click to expand affiliations / ORCID
Langbein S
Department of Urology, University Hospital Mannheim, Theodor-Kutzer-Ufer 1-3, 68167 Mannheim, Germany.
Zerilli M
Zur Hausen A
Staiger W
Rensch-Boschert K
Lukan N
Popa J
Ternullo M P
Steidler A
Weiss C
Grobholz R
Willeke F
Alken P
Stassi G
Schubert P
Coy J F
References (37)
37 references, click to expand
  1. MSC, a new benzoquinone-containing natural product with antimetastatic effect.
    Cancer Biother Radiopharm. 1999 Aug;14(4):277-89 PMID: 10850313
  2. Molecular cloning of tissue-specific transcripts of a transketolase-related gene: implications for the evolution of new vertebrate genes.
    Genomics. 1996 Mar 15;32(3):309-16 PMID: 8838793
  3. Genistein inhibits nonoxidative ribose synthesis in MIA pancreatic adenocarcinoma cells: a new mechanism of controlling tumor growth.
    Pancreas. 2001 Jan;22(1):1-7 PMID: 11138960
  4. Wheat germ extract decreases glucose uptake and RNA ribose formation but increases fatty acid synthesis in MIA pancreatic adenocarcinoma cells.
    Pancreas. 2001 Aug;23(2):141-7 PMID: 11484916
  5. The effect of thiamine supplementation on tumour proliferation. A metabolic control analysis study.
    Eur J Biochem. 2001 Aug;268(15):4177-82 PMID: 11488910
  6. Lactate stimulates fibroblast expression of hyaluronan and CD44: the Warburg effect revisited.
    Exp Cell Res. 2002 May 15;276(1):24-31 PMID: 11978005
  7. Contribution by different fuels and metabolic pathways to the total ATP turnover of proliferating MCF-7 breast cancer cells.
    Biochem J. 2002 May 15;364(Pt 1):309-15 PMID: 11988105
  8. Hypoxia-inducible factor 1 activation by aerobic glycolysis implicates the Warburg effect in carcinogenesis.
    J Biol Chem. 2002 Jun 28;277(26):23111-5 PMID: 11943784
  9. Fermented wheat germ extract inhibits glycolysis/pentose cycle enzymes and induces apoptosis through poly(ADP-ribose) polymerase activation in Jurkat T-cell leukemia tumor cells.
    J Biol Chem. 2002 Nov 29;277(48):46408-14 PMID: 12351627
  10. The glycolytic phenotype in carcinogenesis and tumor invasion: insights through mathematical models.
    Cancer Res. 2003 Jul 15;63(14):3847-54 PMID: 12873971
  11. A medical nutriment has supportive value in the treatment of colorectal cancer.
    Br J Cancer. 2003 Aug 4;89(3):465-9 PMID: 12888813
  12. Akt stimulates aerobic glycolysis in cancer cells.
    Cancer Res. 2004 Jun 1;64(11):3892-9 PMID: 15172999
  13. Lactate in solid malignant tumors: potential basis of a metabolic classification in clinical oncology.
    Curr Med Chem. 2004 Aug;11(16):2195-204 PMID: 15279558
  14. Identification of novel small-molecule inhibitors for human transketolase by high-throughput screening with fluorescent intensity (FLINT) assay.
    J Biomol Screen. 2004 Aug;9(5):427-33 PMID: 15296642
  15. Preoperative F-18 fluorodeoxyglucose-positron emission tomography maximal standardized uptake value predicts survival after lung cancer resection.
    J Clin Oncol. 2004 Aug 15;22(16):3255-60 PMID: 15310769
  16. Faecal tumour M2 pyruvate kinase: a new, sensitive screening tool for colorectal cancer.
    Br J Cancer. 2004 Aug 31;91(5):980-4 PMID: 15266315
  17. Role of carbonic anhydrase IX in human tumor cell growth, survival, and invasion.
    Cancer Res. 2004 Sep 1;64(17):6160-5 PMID: 15342400
  18. Glucose utilization by intracranial meningiomas as an index of tumor aggressivity and probability of recurrence: a PET study.
    Radiology. 1987 Aug;164(2):521-6 PMID: 3496626
  19. The pentose pathway: a random harvest. Impediments which oppose acceptance of the classical (F-type) pentose cycle for liver, some neoplasms and photosynthetic tissue. The case for the L-type pentose pathway.
    Int J Biochem. 1987;19(9):749-817 PMID: 3319734
  20. Glucose uptake, perfusion, and cell proliferation in head and neck tumors: relation of positron emission tomography to flow cytometry.
    J Nucl Med. 1991 Aug;32(8):1548-55 PMID: 1869977
  21. Effects of a ketogenic diet on tumor metabolism and nutritional status in pediatric oncology patients: two case reports.
    J Am Coll Nutr. 1995 Apr;14(2):202-8 PMID: 7790697
  22. Ascorbate as a substrate for glycolysis or gluconeogenesis: evidence for an interorgan ascorbate cycle.
    Free Radic Biol Med. 1997;23(5):804-8 PMID: 9296458
  23. Oxythiamine and dehydroepiandrosterone inhibit the nonoxidative synthesis of ribose and tumor cell proliferation.
    Cancer Res. 1997 Oct 1;57(19):4242-8 PMID: 9331084
  24. Mass isotopomer study of the nonoxidative pathways of the pentose cycle with [1,2-13C2]glucose.
    Am J Physiol. 1998 May;274(5 Pt 1):E843-51 PMID: 9612242
  25. Properties and functions of the thiamin diphosphate dependent enzyme transketolase.
    Int J Biochem Cell Biol. 1998 Dec;30(12):1297-318 PMID: 9924800
  26. An acidic environment leads to p53 dependent induction of apoptosis in human adenoma and carcinoma cell lines: implications for clonal selection during colorectal carcinogenesis.
    Oncogene. 1999 May 27;18(21):3199-204 PMID: 10359525
  27. Oxythiamine and dehydroepiandrosterone induce a G1 phase cycle arrest in Ehrlich's tumor cells through inhibition of the pentose cycle.
    FEBS Lett. 1999 Jul 30;456(1):113-8 PMID: 10452541
  28. Why do cancers have high aerobic glycolysis?
    Nat Rev Cancer. 2004 Nov;4(11):891-9 PMID: 15516961
  29. The mechanism of pentose phosphate conversion to hexose monophosphate. I. With a liver enzyme preparation.
    J Biol Chem. 1954 Mar;207(1):393-403 PMID: 13152115
  30. Fatty acid synthase-catalyzed de novo fatty acid biosynthesis: from anabolic-energy-storage pathway in normal tissues to jack-of-all-trades in cancer cells.
    Arch Immunol Ther Exp (Warsz). 2004 Nov-Dec;52(6):414-26 PMID: 15577743
  31. Energy boost: the Warburg effect returns in a new theory of cancer.
    J Natl Cancer Inst. 2004 Dec 15;96(24):1805-6 PMID: 15601632
  32. Inhibition of glycolysis in cancer cells: a novel strategy to overcome drug resistance associated with mitochondrial respiratory defect and hypoxia.
    Cancer Res. 2005 Jan 15;65(2):613-21 PMID: 15695406
  33. Perturbational profiling of a cell-line model of tumorigenesis by using metabolic measurements.
    Proc Natl Acad Sci U S A. 2005 Apr 26;102(17):5992-7 PMID: 15840712
  34. AMP-activated protein kinase induces a p53-dependent metabolic checkpoint.
    Mol Cell. 2005 Apr 29;18(3):283-93 PMID: 15866171
  35. The glucose dependence of Akt-transformed cells can be reversed by pharmacologic activation of fatty acid beta-oxidation.
    Oncogene. 2005 Jun 16;24(26):4165-73 PMID: 15806154
  36. Mutations in the transketolase-like gene TKTL1: clinical implications for neurodegenerative diseases, diabetes and cancer.
    Clin Lab. 2005;51(5-6):257-73 PMID: 15991799
  37. Cell cycle progression and apoptosis after irradiation in an acidic environment.
    Cell Death Differ. 2000 Aug;7(8):729-38 PMID: 10918447
Article Info
Journal
British journal of cancer
Abbr.
Br J Cancer
ISSN
0007-0920
Published
2006-02-27
Pages
578-85
Language
English
Region
England
NLM ID
0370635
PMCID
PMC2361175
Subset
IM
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