4.6 Article

Hepatocellular alterations and dysregulation of oncogenic pathways in the liver of transgenic mice overexpressing growth hormone

期刊

CELL CYCLE
卷 12, 期 7, 页码 1042-1057

出版社

LANDES BIOSCIENCE
DOI: 10.4161/cc.24026

关键词

growth hormone; liver; beta-catenin; GSK3 beta; NF kappa B; c-jun; c-myc; c-fos; cyclin D1; cyclin E

资金

  1. National Council of Scientific and Technological Research CONICET [PIP 427]
  2. National Agency for Promotion of Science and Technology ANPCyT [PICT 2008-0397]
  3. National Institute on Aging [AG19899, AG031736]
  4. CONICET
  5. University of Buenos Aires
  6. Fulbright Commission
  7. Southern Illinois University

向作者/读者索取更多资源

Growth hormone (GH) overexpression throughout life in transgenic mice is associated with the development of liver tumors at old ages. The preneoplastic pathology observed in the liver of young adult GH-overexpressing mice is similar to that present in humans at high risk of hepatic cancer. To elucidate the molecular pathogenesis underlying the prooncogenic liver pathology induced by prolonged exposure to elevated GH levels, the activation and expression of several components of signal transduction pathways that have been implicated in hepatocellular carcinogenesis were evaluated in the liver of young adult GH-transgenic mice. In addition, males and females were analyzed in parallel in order to evaluate sexual dimorphism. Transgenic mice from both sexes exhibited hepatocyte hypertrophy with enlarged nuclear size and exacerbated hepatocellular proliferation, which were higher in males. Dysregulation of several oncogenic pathways was observed in the liver of GH-overexpressing transgenic mice. Many signaling mediators and effectors were upregulated in transgenic mice compared with normal controls, including Akt2, NF kappa B, GSK3 beta, beta-catenin, cyclin D1, cyclin E, c-myc, c-jun and c-fos. The molecular alterations described did not exhibit sexual dimorphism in transgenic mice except for higher gene expression and nuclear localization of cyclin D1 in males. We conclude that prolonged exposure to GH induces in the liver alterations in signaling pathways involved in cell growth, proliferation and survival that resemble those found in many human tumors.

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