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Acid and neutral sphingomyelinases: Roles and mechanisms of regulation

  • Medical University of South Carolina

Research output: Contribution to journalShort surveypeer-review

305 Scopus citations

Abstract

Ceramide, an emerging bioactive lipid and second messenger, is mainly generated by hydrolysis of sphingomyelin through the action of sphingomyelinases. At least two sphingomyelinases, neutral and acid sphingomyelinases, are activated in response to many extracellular stimuli. Despite extensive studies, the precise cellular function of each of these sphingomyelinases in sphingomyelin turnover and in the regulation of ceramide-mediated responses is not well understood. Therefore, it is essential to elucidate the factors and mechanisms that control the activation of acid and neutral sphingomyelinases to understand their the roles in cell regulation. This review will focus on the molecular mechanisms that regulate these enzymes in vivo and in vitro, especially the roles of oxidants (glutathione, peroxide, nitric oxide), proteins (saposin, caveolin 1, caspases), and lipids (diacylglycerol, arachidonic acid, and ceramide).

Original languageEnglish
Pages (from-to)27-44
Number of pages18
JournalBiochemistry and Cell Biology
Volume82
Issue number1
DOIs
StatePublished - Feb 2004

Keywords

  • Apoptosis
  • Ceramide
  • FAN (factor associated with N-Smase activation)
  • Niemann-Pick disease
  • Sphingomyelinase

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