The Plasma Membrane Na + /Ca 2+ Exchanger Is Cleaved by Distinct Protease Families in Neuronal Cell Death

Neurodegenerative conditions commonly involve loss of neuronal connectivity, synaptic dysfunction with excessive pruning, and ionic imbalances. These often serve as a prelude to cell death either through the activation of apoptotic or necrotic death routines or excess autophagy. In many instances, a...

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Veröffentlicht in:Annals of the New York Academy of Sciences 2007-03, Vol.1099 (1), p.451-455
Hauptverfasser: BANO, D., MUNARRIZ, E., CHEN, H. L., ZIVIANI, E., LIPPI, G., YOUNG, K. W., NICOTERA, P.
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Sprache:eng
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Zusammenfassung:Neurodegenerative conditions commonly involve loss of neuronal connectivity, synaptic dysfunction with excessive pruning, and ionic imbalances. These often serve as a prelude to cell death either through the activation of apoptotic or necrotic death routines or excess autophagy. In many instances, a local or generalized Ca 2+ deregulation is involved in signaling or executing cell death. We have recently shown that in brain ischemia, and during excitotoxicity triggered by excess glutamate, the irreversible Ca 2+ deregulation leading to necrosis is due to calpain‐mediated modulation of the plasma membrane Na + /Ca 2+ exchanger (NCX). Here we show that the NCX can also be cleaved by caspases in neurons undergoing apoptosis, which suggests that cleavage of the main Ca 2+ extrusion pathway is a lethal event in multiple forms of cell death.
ISSN:0077-8923
1749-6632
DOI:10.1196/annals.1387.006