Amyloid-beta peptide induces oligodendrocyte death by activating the neutral sphingomyelinase-ceramide pathway

J Cell Biol. 2004 Jan 5;164(1):123-31. doi: 10.1083/jcb.200307017.

Abstract

Amyloid-beta peptide (Abeta) accumulation in senile plaques, a pathological hallmark of Alzheimer's disease (AD), has been implicated in neuronal degeneration. We have recently demonstrated that Abeta induced oligodendrocyte (OLG) apoptosis, suggesting a role in white matter pathology in AD. Here, we explore the molecular mechanisms involved in Abeta-induced OLG death, examining the potential role of ceramide, a known apoptogenic mediator. Both Abeta and ceramide induced OLG death. In addition, Abeta activated neutral sphingomyelinase (nSMase), but not acidic sphingomyelinase, resulting in increased ceramide generation. Blocking ceramide degradation with N-oleoyl-ethanolamine exacerbated Abeta cytotoxicity; and addition of bacterial sphingomyelinase (mimicking cellular nSMase activity) induced OLG death. Furthermore, nSMase inhibition by 3-O-methyl-sphingomyelin or by gene knockdown using antisense oligonucleotides attenuated Abeta-induced OLG death. Glutathione (GSH) precursors inhibited Abeta activation of nSMase and prevented OLG death, whereas GSH depletors increased nSMase activity and Abeta-induced death. These results suggest that Abeta induces OLG death by activating the nSMase-ceramide cascade via an oxidative mechanism.

Publication types

  • Research Support, U.S. Gov't, P.H.S.

MeSH terms

  • Alzheimer Disease / metabolism
  • Alzheimer Disease / physiopathology
  • Amyloid beta-Peptides / metabolism*
  • Amyloid beta-Peptides / pharmacology
  • Animals
  • Cell Death / drug effects
  • Cell Death / physiology
  • Cells, Cultured
  • Ceramides / metabolism*
  • Ceramides / pharmacology
  • Endocannabinoids
  • Ethanolamines / pharmacology
  • Glutathione / metabolism
  • Nerve Degeneration / metabolism
  • Nerve Degeneration / physiopathology
  • Oleic Acids
  • Oligodendroglia / cytology
  • Oligodendroglia / drug effects
  • Oligodendroglia / metabolism*
  • Oxidative Stress / drug effects
  • Oxidative Stress / physiology
  • Rats
  • Signal Transduction / physiology*
  • Spheroids, Cellular / cytology
  • Sphingomyelin Phosphodiesterase / metabolism*
  • Sphingomyelins / pharmacology
  • Up-Regulation / drug effects
  • Up-Regulation / physiology

Substances

  • Amyloid beta-Peptides
  • Ceramides
  • Endocannabinoids
  • Ethanolamines
  • Oleic Acids
  • Sphingomyelins
  • N-oleoylethanolamine
  • Sphingomyelin Phosphodiesterase
  • Glutathione