4.7 Article

Inhibition of Membrane-Associated Catalase, Extracellular ROS/RNS Signaling and Aquaporin/H2O2-Mediated Intracellular Glutathione Depletion Cooperate during Apoptosis Induction in the Human Gastric Carcinoma Cell Line MKN-45

Journal

ANTIOXIDANTS
Volume 10, Issue 10, Pages -

Publisher

MDPI
DOI: 10.3390/antiox10101585

Keywords

hydrogen peroxide; aquaporin; catalase; tumor cell; apoptosis-inducing signaling; glutathione; xC transporter; apoptosis

Funding

  1. Medical Faculty of the University of Freiburg

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The human gastric carcinoma cell line MKN-45 is protected from apoptosis-inducing signaling pathways by a membrane-associated catalase, but full apoptosis induction requires intrusion of extracellular H2O2 through aquaporins. Inhibition of aquaporins, NOX1, and H2O2 decomposition can prevent this secondary step in apoptosis induction. Understanding the interactions between ROS/RNS signaling, aquaporins/H2O2 sensitizing effects, and the xC transporter/glutathione synthase system is crucial for selective apoptosis induction in tumor cells.
The human gastric carcinoma cell line MKN-45 is a prototype of bona fide tumor cells, as it is protected from the NADPH oxidase-1 (NOX-1)-driven HOCl- and nitric oxide (NO)/peroxynitrite apoptosis-inducing signaling pathways by a membrane-associated catalase. The use of inhibitors/scavengers shows that inhibition of membrane-associated catalase is sufficient for the activation of NO/peroxynitrite or HOCl signaling. However, this signaling is not sufficient for apoptosis induction, as intracellular glutathione peroxidase/glutathione counteracts these signaling effects. Therefore, intrusion of extracellular tumor cell-derived H2O2 through aquaporins is required for the full apoptosis-inducing effect of extracellular reactive oxygen/nitrogen species. This secondary step in apoptosis induction can be prevented by inhibition of aquaporins, inhibition of NOX1 and decomposition of H2O2. Pretreatment with inhibitors of glutathione synthase or the cysteine-glutamine antiporter (xC transporter) abrogate the requirement for aquaporin/H2O2-mediated glutathione depletion, thus demonstrating that intracellular glutathione is the target of intruding H2O2. These data allow definition of mechanistic interactions between ROS/RNS signaling after inhibition of membrane-associated catalase, the sensitizing effects of aquaporins/H2O2 and the counteraction of the xC transporter/glutathione synthase system. Knowledge of these mechanistic interactions is required for the understanding of selective apoptosis induction in tumor cells through reestablishment of apoptosis-inducing ROS/RNS signaling.

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