The Fas pathway is involved in pancreatic beta cell secretory function.

Research output: Contribution to journalJournal articleResearchpeer-review

  • Desiree M Schumann
  • Kathrin Maedler
  • Isobel Franklin
  • Daniel Konrad
  • Joachim Størling
  • Marianne Böni-Schnetzler
  • Asllan Gjinovci
  • Michael O Kurrer
  • Benoit R Gauthier
  • Domenico Bosco
  • Axel Andres
  • Thierry Berney
  • Melanie Greter
  • Burkhard Becher
  • Alexander V Chervonsky
  • Philippe A Halban
  • Mandrup-Poulsen, Thomas
  • Claes B Wollheim
  • Marc Y Donath
Pancreatic beta cell mass and function increase in conditions of enhanced insulin demand such as obesity. Failure to adapt leads to diabetes. The molecular mechanisms controlling this adaptive process are unclear. Fas is a death receptor involved in beta cell apoptosis or proliferation, depending on the activity of the caspase-8 inhibitor FLIP. Here we show that the Fas pathway also regulates beta cell secretory function. We observed impaired glucose tolerance in Fas-deficient mice due to a delayed and decreased insulin secretory pattern. Expression of PDX-1, a beta cell-specific transcription factor regulating insulin gene expression and mitochondrial metabolism, was decreased in Fas-deficient beta cells. As a consequence, insulin and ATP production were severely reduced and only partly compensated for by increased beta cell mass. Up-regulation of FLIP enhanced NF-kappaB activity via NF-kappaB-inducing kinase and RelB. This led to increased PDX-1 and insulin production independent of changes in cell turnover. The results support a previously undescribed role for the Fas pathway in regulating insulin production and release.
Original languageEnglish
JournalProceedings of the National Academy of Science of the United States of America
Volume104
Issue number8
Pages (from-to)2861-6
Number of pages5
ISSN0027-8424
DOIs
Publication statusPublished - 2007

Bibliographical note

Keywords: Animals; Antigens, CD95; Blood Glucose; CASP8 and FADD-Like Apoptosis Regulating Protein; Fas Ligand Protein; Gene Expression Regulation; Homeodomain Proteins; Insulin; Insulin-Secreting Cells; Male; Mice; Mice, Inbred C57BL; Mitochondria; NF-kappa B; RNA, Messenger; Trans-Activators

ID: 8465619