Protein Kinase C δ Activation and Translocation to the Nucleus Are Required for Fatty Acid-Induced Apoptosis of Insulin-Secreting Cells

  1. Katrin Eitel1,
  2. Harald Staiger1,
  3. Johannes Rieger2,
  4. Harald Mischak3,
  5. Heide Brandhorst4,
  6. Mathias D. Brendel4,
  7. Reinhard G. Bretzel4,
  8. Hans-Ulrich Häring1 and
  9. Monika Kellerer1
  1. 1Internal Medicine IV, University of Tübingen, Tübingen, Germany
  2. 2Department of Neurology, University of Tübingen, Tübingen, Germany
  3. 3Department of Nephrology, University of Hannover, Hannover, Germany
  4. 4Internal Medicine III, University of Giessen, Giessen, Germany

    Abstract

    Insulin resistance as well as pancreatic β-cell failure can be induced by elevated free fatty acid (FFA) levels. We studied the mechanisms of FFA-induced apoptosis in rat and human β-cells. Chronic treatment with high physiological levels of saturated fatty acids (palmitate and stearate), but not with monounsaturated (palmitoleate and oleate) or polyunsaturated fatty acids (linoleate), triggers apoptosis in ∼20% of cultured RIN1046-38 cells. Apoptosis restricted to saturated FFAs was also observed in primary cultured human β-cells, suggesting that this mechanism is potentially relevant in vivo in humans. To further analyze FFA-induced signaling pathways leading to apoptosis, we used RIN1046-38 cells. Apoptosis was accompanied by a rapid (within 15 min) nuclear translocation of protein kinase C (PKC)-δ and subsequent lamin B1 disassembly. This translocation was impaired by the phospholipase C inhibitor U-73122, which also substantially reduced apoptosis. Furthermore, lamin B1 disassembly and apoptosis were decreased by cell transfection with a dominant-negative mutant form of PKC-δ. These data suggest that nuclear translocation and kinase activity of PKC-δ are both necessary for saturated fatty acid-induced apoptosis.

    Footnotes

    • Address correspondence and reprint requests to PD Dr. Monika Kellerer, University of Tübingen, Internal Medicine IV, Otfried-Müller-Str. 10, D-72076 Tübingen, Germany. E-mail: monika.kellerer{at}med.uni-tuebingen.de.

      Received for publication 9 July 2002 and accepted in revised form 2 January 2003

      FFA, free fatty acid; PKC, protein kinase C; PLC, phospholipase C; TUNEL, transferase-mediated dUTP nick-end labeling.

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