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Glucose induces beta-cell apoptosis via upregulation of the Fas receptor in human islets

Diabetes. 2001 Aug;50(8):1683-90. doi: 10.2337/diabetes.50.8.1683.

Abstract

In autoimmune type 1 diabetes, Fas-to-Fas-ligand (FasL) interaction may represent one of the essential pro-apoptotic pathways leading to a loss of pancreatic beta-cells. In the advanced stages of type 2 diabetes, a decline in beta-cell mass is also observed, but its mechanism is not known. Human islets normally express FasL but not the Fas receptor. We observed upregulation of Fas in beta-cells of type 2 diabetic patients relative to nondiabetic control subjects. In vitro exposure of islets from nondiabetic organ donors to high glucose levels induced Fas expression, caspase-8 and -3 activation, and beta-cell apoptosis. The effect of glucose was blocked by an antagonistic anti-Fas antibody, indicating that glucose-induced apoptosis is due to interaction between the constitutively expressed FasL and the upregulated Fas. These results support a new role for glucose in regulating Fas expression in human beta-cells. Upregulation of the Fas receptor by elevated glucose levels may contribute to beta-cell destruction by the constitutively expressed FasL independent of an autoimmune reaction, thus providing a link between type 1 and type 2 diabetes.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Adolescent
  • Adult
  • Aged
  • Animals
  • Caspase 3
  • Caspase 8
  • Caspase 9
  • Caspases / metabolism
  • Cattle
  • Cell Culture Techniques / methods
  • Cell Division
  • Cells, Cultured
  • Diabetes Mellitus, Type 2 / pathology
  • Diabetes Mellitus, Type 2 / physiopathology*
  • Enzyme Activation
  • Enzyme Precursors / metabolism
  • Epithelium, Corneal
  • Extracellular Matrix / physiology
  • Fas Ligand Protein
  • Glucose / pharmacology*
  • Humans
  • Islets of Langerhans / cytology*
  • Islets of Langerhans / drug effects
  • Islets of Langerhans / physiology*
  • Kinetics
  • Membrane Glycoproteins / physiology
  • Middle Aged
  • Reference Values
  • fas Receptor / drug effects
  • fas Receptor / physiology*

Substances

  • Enzyme Precursors
  • FASLG protein, human
  • Fas Ligand Protein
  • Membrane Glycoproteins
  • fas Receptor
  • CASP3 protein, human
  • CASP8 protein, human
  • CASP9 protein, human
  • Caspase 3
  • Caspase 8
  • Caspase 9
  • Caspases
  • Glucose