• Title of article

    Contribution of mitochondrial GSH transport to matrix GSH status and colonic epithelial cell apoptosis

  • Author/Authors

    Magdalena L. Circu، نويسنده , , Cynthia Rodriguez Cano، نويسنده , , Ronald Maloney، نويسنده , , Mary Pat Moyer، نويسنده , , Tak Yee Aw، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2008
  • Pages
    11
  • From page
    768
  • To page
    778
  • Abstract
    Previously, we showed that cellular glutathione/glutathione disulfide (GSH/GSSG) play an important role in apoptotic signaling, and early studies linked mitochondrial GSH (mtGSH) loss to enhanced cytotoxicity. The current study focuses on the contribution of mitochondrial GSH transport and mitochondrial GSH/GSSG status to apoptosis initiation in a nontransformed colonic epithelial cell line, NCM460, using menadione (MQ), a quinone with redox cycling bioreactivity, as a model of oxidative challenge. Our results implicate the semiquinone radical in MQ-mediated apoptosis, which was associated with marked oxidation of the mitochondrial soluble GSH and protein-bound thiol pools, mitochondria–to–cytosol translocation of cytochrome c, and activation of caspase-9. MQ-induced apoptosis was potentiated by inhibition of mtGSH uptake in accordance with exacerbated mitochondrial GSSG (mtGSSG) and protein–SSG and compromised mitochondrial respiratory activity. Moreover, cell apoptosis was prevented by N-acetyl-l-cysteine (NAC) pretreatment, which restored cellular redox homeostasis. Importantly, mtGSH transport inhibition effectively blocked NAC-mediated protection in accordance with its failure to attenuate mtGSSG. These results support the importance of mitochondrial GSH transport and the mtGSH status in oxidative cell killing.
  • Keywords
    Menadione , free radicals , NCM460 cells , intestinal epithelial cells , Mitochondrial GSHtransporters , Redox imbalance , GSH/GSSG ratio , Apoptosis , Mitochondrial redox
  • Journal title
    Free Radical Biology and Medicine
  • Serial Year
    2008
  • Journal title
    Free Radical Biology and Medicine
  • Record number

    521226