GH Signalling in Pancreatic / 3 - Cells
نویسنده
چکیده
GH and its related peptide PRL are known to stimulate proliferation and insulin biosynthesis in pancreatic fl-cells, and assumed to be involved in their functional maturation. We investigated signal transduction of GH and PRL in insulin-secreting cells using the differentiated rat insulinoma cell line, INS-1. In these cells, both hormones stimulated proliferation and DNA synthesis, increased viability, cellular metabolism and insulin content. GH induced cytosolic Ca2+ ([Ca2+];) rises, which appear to be due to Ca2+-influx through voltage-gated Ca2+-channels. GH also promoted tyrosine phosphorylation of several proteins in INS-1 cells, one of which was identified as JAK2 tyrosine kinase. Moreover, GH caused changes in DNA binding of nuclear proteins to some interferon-'y-activated sites. Verapamil inhibited neither DNA synthesis nor JAK2 phosphorylation stimulated by GH, whereas a tyrosine kinase inhibitor, lavendustin A, blocked the mitogenic effect. Involvement of cAMP is also suggested because Rp-cAMPS, a competitive inhibitor of protein kinase A, abolished both [Ca2+]; rises and DNA synthesis stimulated by GH. The effects of GH and PRL on [Ca2+];, JAK2 phosphorylation and DNA binding of the STATs were virtually identical in INS-1 cells. Since both hormones failed to activate MAP kinase in these cells, it is strongly suggested that activation of the JAK-STAT pathway is the major signalling event for the mitogenic effects of GH and PRL in /3-cells. It remains to be clarified whether the [Ca2+]; rise mediates other effects of these hormones.
منابع مشابه
Molecular mechanism of growth hormone signalling.
GH exerts a wide variety of biological actions in many different tissues and cell types. The actions of GH at the cellular level can be divided into three categories: metabolic, mitogenic and differentiation. Metabolic effects of GH have been well documented and characterized in adipocytes. The major effect of GH in adipocytes from intact animals is an anti insulin-like or diabetogenic effect [...
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