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Transgenic expression of human thymidylate synthase accelerates the development of hyperplasia and tumors in the endocrine pancreas

  1. Author:
    Chen, M.
    Rahman, L.
    Voeller, D.
    Kastanos, E.
    Yang, S. X.
    Feigenbaum, L.
    Allegra, C.
    Kaye, F. J.
    Steeg, P.
    Zajac-Kaye, M.
  2. Author Address

    Ctr Canc Res, Mol Therapeut Program, Bethesda, MD USA. Natl Clin Target Validat Lab, Div Canc Treatment & Diag, Bethesda, MD USA. NCI, Frederick Canc Res, Lab Anim Sci, Frederick, MD 21701 USA. NCI, Genet Branch, Bethesda, MD 20892 USA.;Zajac-Kaye, M, NCI, NIH, Bldg 37 RM 1122,37 Convent Dr, Bethesda, MD 20892 USA.;kayem@exchange.nih.gov
    1. Year: 2007
    2. Date: Jul
  1. Journal: Oncogene
    1. 26
    2. 33
    3. Pages: 4817-4824
  2. Type of Article: Article
  3. ISSN: 0950-9232
  1. Abstract:

    Thymidylate synthase ( TS) is an essential enzyme for DNA synthesis and repair and elevated levels of TS have been identified as an important prognostic biomarker for colorectal cancer and several other common human malignancies. In addition, TS gene expression has been linked with cell-cycle regulation and cell proliferation through the ability of retinoblastoma protein to repress the transcriptional activation of E2F target genes such as TS. Therefore, overproduction of TS could participate in the progression to a neoplastic phenotype. Consistent with this model, a recent study has suggested that ectopic TS express ion can induce a transformed phenotype in mammalian cells. To investigate the role of deregulated TS activity in tumor development, we generated transgenic mice that express high levels of catalytically active human TS( hTS) exclusively in the pancreas and low levels of hTS in multiple other tissues. Analyses of pancreatic tissue in TS transgenic mice revealed abnormalities within the endocrine pancreas, ranging from pancreatic islet hyperplasia to the detection of islet cell tumors. Overexpression of hTS in murine islets provides a new model to study genetic alterations associated with the progression from normal cells to hyperplasia to islet cell tumors, and suggests that this mouse model may be useful for regulating TS activity in vivo for development of cancer prevention and new therapies.

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External Sources

  1. DOI: 10.1038/sj.onc.1210273
  2. WOS: 000248170400006

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