Overexpression of the ped/pea-15 gene causes diabetes by impairing glucose-stimulated insulin secretion in addition to insulin action.

نویسندگان

  • Giovanni Vigliotta
  • Claudia Miele
  • Stefania Santopietro
  • Giuseppe Portella
  • Anna Perfetti
  • Maria Alessandra Maitan
  • Angela Cassese
  • Francesco Oriente
  • Alessandra Trencia
  • Francesca Fiory
  • Chiara Romano
  • Cecilia Tiveron
  • Laura Tatangelo
  • Giancarlo Troncone
  • Pietro Formisano
  • Francesco Beguinot
چکیده

Overexpression of the ped/pea-15 gene is a common feature of type 2 diabetes. In the present work, we show that transgenic mice ubiquitously overexpressing ped/pea-15 exhibited mildly elevated random-fed blood glucose levels and decreased glucose tolerance. Treatment with a 60% fat diet led ped/pea-15 transgenic mice to develop diabetes. Consistent with insulin resistance in these mice, insulin administration reduced glucose levels by only 35% after 45 min, compared to 70% in control mice. In vivo, insulin-stimulated glucose uptake was decreased by almost 50% in fat and muscle tissues of the ped/pea-15 transgenic mice, accompanied by protein kinase Calpha activation and block of insulin induction of protein kinase Czeta. These changes persisted in isolated adipocytes from the transgenic mice and were rescued by the protein kinase C inhibitor bisindolylmaleimide. In addition to insulin resistance, ped/pea-15 transgenic mice showed a 70% reduction in insulin response to glucose loading. Stable overexpression of ped/pea-15 in the glucose-responsive MIN6 beta-cell line also caused protein kinase Calpha activation and a marked decline in glucose-stimulated insulin secretion. Antisense block of endogenous ped/pea-15 increased glucose sensitivity by 2.5-fold in these cells. Thus, in vivo, overexpression of ped/pea-15 may lead to diabetes by impairing insulin secretion in addition to insulin action.

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منابع مشابه

Perspectives Frontiers: PED/PEA-15, a multifunctional protein controlling cell survival and glucose metabolism

Fiory F, Formisano P, Perruolo G, Beguinot F. PED/PEA-15, a multifunctional protein controlling cell survival and glucose metabolism. Am J Physiol Endocrinol Metab 297: E592–E601, 2009. First published June 16, 2009; doi:10.1152/ajpendo.00228.2009.—PED/ PEA-15 is a 15-kDa ubiquitously expressed protein implicated in a number of fundamental cellular functions, including apoptosis, proliferation,...

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Frontiers: PED/PEA-15, a multifunctional protein controlling cell survival and glucose metabolism.

PED/PEA-15 is a 15-kDa ubiquitously expressed protein implicated in a number of fundamental cellular functions, including apoptosis, proliferation, and glucose metabolism. PED/PEA-15 lacks enzymatic function and serves mainly as a molecular adaptor. PED/PEA-15 is an endogenous substrate for protein kinase C (PKC), calcium/calmodulin-dependent protein kinase II (CAM kinase II), and Akt. In parti...

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PED/PEA-15 gene controls glucose transport and is overexpressed in type 2 diabetes mellitus.

We have used differential display to identify genes whose expression is altered in type 2 diabetes thus contributing to its pathogenesis. One mRNA is overexpressed in fibroblasts from type 2 diabetics compared with non-diabetic individuals, as well as in skeletal muscle and adipose tissues, two major sites of insulin resistance in type 2 diabetes. The levels of the protein encoded by this mRNA ...

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Adenoviral Gene Transfer of PLD1-D4 Enhances Insulin Sensitivity in Mice by Disrupting Phospholipase D1 Interaction with PED/PEA-15

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Doctorate Program in Molecular Oncology and Endocrinology XVIII cycle - 2002–2006 Coordinator: Prof. Giancarlo Vecchio “NOVEL MECHANISMS RESPONSIBLE FOR CONTROLLING GLUCOSE-INDUCED INSULIN SECRETION IN PANCREATIC BETA-CELLS”

................................................................................4 BACKGROUND..........................................................................5 §1.0. Glucose Homeostasis......................................................................5 1.1. Pancreatic beta-cells..............................................................5 1.2.Insulin..................................

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عنوان ژورنال:
  • Molecular and cellular biology

دوره 24 11  شماره 

صفحات  -

تاریخ انتشار 2004