4.6 Article

Growth hormone modulation of EGF-induced PI3K-Akt pathway in mice liver

Journal

CELLULAR SIGNALLING
Volume 24, Issue 2, Pages 514-523

Publisher

ELSEVIER SCIENCE INC
DOI: 10.1016/j.cellsig.2011.10.001

Keywords

Growth hormone (GH); Epidermal growth factor (EGF); PI3K-Akt pathway; GH transgenic mice; Grb2-associated binder-1 (Gab1)

Categories

Funding

  1. CONICET [PIP-427]
  2. UBA [B610]
  3. ANPCYT [PICT 749]
  4. NIH [AG 19899, AG031736]
  5. Fulbright Commission

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The epidermal growth factor (EGF) activates the phosphatidylinositol 3-kinase (PI3K)-Akt cascade among other signaling pathways. This route is involved in cell proliferation and survival, therefore, its dysregulation can promote cancer. Considering the relevance of the PI3K-Akt signaling in cell survival and in the pathogenesis of cancer, and that GH was reported to modulate EGFR expression and signaling, the objective of this study was to analyze the effects of increased GH levels on EGF-induced PI3K-Akt signaling. EGF-induced signaling was evaluated in the liver of GH-overexpressing transgenic mice and in their normal siblings. While Akt expression was increased in GH-overexpressing mice, EGF-induced phosphorylation of Akt, relative to its protein content, was diminished at Ser473 and inhibited at Thr308; consequently, mTOR, which is a substrate of Akt, was not activated by EGF. However, the activation of PDK1, a kinase involved in Akt phosphorylation at Thr308, was not reduced in transgenic mice. Kinetics studies of EGF-induced Akt phosphorylation showed that it is rapidly and transiently induced in GH-overexpressing mice compared with normal siblings. Thus, the expression and activity of phosphatases involved in the termination of the PI3K-Akt signaling were studied. In transgenic mice, neither PTEN nor PP2A were hyperactivated; however, EGF induced the rapid and transient association of SHP-2 to Gab1, which mediates association to EGFR and activation of PI3K. Rapid recruitment of SHP2, which would accelerate the termination of the proliferative signal induced, could be therefore contributing to the diminished EGF-induced activity of Akt in GH-overexpressing mice. (C) 2011 Elsevier Inc. All rights reserved.

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