Literature DB >> 19417083

Polyamine biosynthesis impacts cellular folate requirements necessary to maintain S-adenosylmethionine and nucleotide pools.

G Bistulfi1, P Diegelman, B A Foster, D L Kramer, C W Porter, D J Smiraglia.   

Abstract

Folate (vitamin B9) is utilized for synthesis of both S-adenosylmethionine (AdoMet) and deoxythymidine monophosphate (dTMP), which are required for methylation reactions and DNA synthesis, respectively. Folate depletion leads to an imbalance in both AdoMet and nucleotide pools, causing epigenetic and genetic damage capable of initiating tumorigenesis. Polyamine biosynthesis also utilizes AdoMet, but polyamine pools are not reduced under a regimen of folate depletion. We hypothesized that high polyamine biosynthesis, due to the high demand on AdoMet pools, might be a factor in determining sensitivity to folate depletion. We found a significant correlation (P<0.001) between polyamine biosynthesis and the amount of folate required to sustain cell line proliferation. We manipulated polyamine biosynthesis by genetic and pharmacological intervention and mechanistically demonstrated that we could thereby alter AdoMet pools and increase or decrease demand on folate availability needed to sustain cellular proliferation. Furthermore, growing a panel of cell lines with 100 nM folate led to imbalanced nucleotide and AdoMet pools only in cells with endogenously high polyamine biosynthesis. These data demonstrate that polyamine biosynthesis is a critical factor in determining sensitivity to folate depletion and may be particularly important in the prostate, where biosynthesis of polyamines is characteristically high due to its secretory function.

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Year:  2009        PMID: 19417083      PMCID: PMC2735368          DOI: 10.1096/fj.09-130708

Source DB:  PubMed          Journal:  FASEB J        ISSN: 0892-6638            Impact factor:   5.191


  59 in total

Review 1.  Prostate-specific membrane antigen.

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2.  Polyamine depletion in human melanoma cells leads to G1 arrest associated with induction of p21WAF1/CIP1/SDI1, changes in the expression of p21-regulated genes, and a senescence-like phenotype.

Authors:  D L Kramer; B D Chang; Y Chen; P Diegelman; K Alm; A R Black; I B Roninson; C W Porter
Journal:  Cancer Res       Date:  2001-11-01       Impact factor: 12.701

3.  Monoclonal antibodies to the extracellular domain of prostate-specific membrane antigen also react with tumor vascular endothelium.

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Journal:  Cancer Res       Date:  1997-09-01       Impact factor: 12.701

4.  Presence and consequence of uracil in preneoplastic DNA from folate/methyl-deficient rats.

Authors:  I P Pogribny; L Muskhelishvili; B J Miller; S J James
Journal:  Carcinogenesis       Date:  1997-11       Impact factor: 4.944

5.  Characterization of prostatic epithelial cell lines derived from transgenic adenocarcinoma of the mouse prostate (TRAMP) model.

Authors:  B A Foster; J R Gingrich; E D Kwon; C Madias; N M Greenberg
Journal:  Cancer Res       Date:  1997-08-15       Impact factor: 12.701

6.  A simplified HPLC method for simultaneously quantifying ribonucleotides and deoxyribonucleotides in cell extracts or frozen tissues.

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Journal:  Cell Prolif       Date:  1993-07       Impact factor: 6.831

Review 7.  Targeting polyamine metabolism and function in cancer and other hyperproliferative diseases.

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Journal:  Nat Rev Drug Discov       Date:  2007-05       Impact factor: 84.694

8.  Folic acid for the prevention of colorectal adenomas: a randomized clinical trial.

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Journal:  JAMA       Date:  2007-06-06       Impact factor: 56.272

9.  Genomic hypomethylation is specific for preneoplastic liver in folate/methyl deficient rats and does not occur in non-target tissues.

Authors:  Igor P Pogribny; S Jill James; Stefanie Jernigan; Marta Pogribna
Journal:  Mutat Res       Date:  2004-04-14       Impact factor: 2.433

10.  Oxidative deamination of 14C putrescine in mouse tissues in vivo.

Authors:  W A Fogel; T Biegański; M Ulatowska
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  29 in total

1.  Dietary folate deficiency blocks prostate cancer progression in the TRAMP model.

Authors:  Gaia Bistulfi; Barbara A Foster; Ellen Karasik; Bryan Gillard; Jeff Miecznikowski; Vineet K Dhiman; Dominic J Smiraglia
Journal:  Cancer Prev Res (Phila)       Date:  2011-08-11

Review 2.  Opposing roles of folate in prostate cancer.

Authors:  Kevin J Rycyna; Dean J Bacich; Denise S O'Keefe
Journal:  Urology       Date:  2013-08-28       Impact factor: 2.649

Review 3.  Polyamines in mammalian pathophysiology.

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Journal:  Cell Mol Life Sci       Date:  2019-06-21       Impact factor: 9.261

4.  Say what? The activity of the polyamine biosynthesis inhibitor difluoromethylornithine in chemoprevention is a result of reduced thymidine pools?

Authors:  Robert A Casero
Journal:  Cancer Discov       Date:  2013-09       Impact factor: 39.397

Review 5.  Do Gametes Woo? Evidence for Their Nonrandom Union at Fertilization.

Authors:  Joseph H Nadeau
Journal:  Genetics       Date:  2017-10       Impact factor: 4.562

6.  LPS-induced CCL2 expression and macrophage influx into the murine central nervous system is polyamine-dependent.

Authors:  Shweta S Puntambekar; Deirdre S Davis; Leo Hawel; Janelle Crane; Craig V Byus; Monica J Carson
Journal:  Brain Behav Immun       Date:  2011-01-13       Impact factor: 7.217

7.  Untargeted metabolite profiling of murine embryos to reveal metabolic perturbations associated with neural tube closure defects.

Authors:  Alex Hansler; Qiuying Chen; Jason D Gray; M Elizabeth Ross; Richard H Finnell; Steven S Gross
Journal:  Birth Defects Res A Clin Mol Teratol       Date:  2014-08-13

8.  Dietary polyamine intake and colorectal cancer risk in postmenopausal women.

Authors:  Ashley J Vargas; Erin L Ashbeck; Betsy C Wertheim; Robert B Wallace; Marian L Neuhouser; Cynthia A Thomson; Patricia A Thompson
Journal:  Am J Clin Nutr       Date:  2015-07-01       Impact factor: 7.045

9.  Growth and metastases of human lung cancer are inhibited in mouse xenografts by a transition state analogue of 5'-methylthioadenosine phosphorylase.

Authors:  Indranil Basu; Joseph Locker; Maria B Cassera; Thomas J Belbin; Emilio F Merino; Xinyuan Dong; Ivan Hemeon; Gary B Evans; Chandan Guha; Vern L Schramm
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10.  Mild folate deficiency induces genetic and epigenetic instability and phenotype changes in prostate cancer cells.

Authors:  Gaia Bistulfi; Erika Vandette; Sei-Ichi Matsui; Dominic J Smiraglia
Journal:  BMC Biol       Date:  2010-01-21       Impact factor: 7.431

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