Activation of Calpain I Converts Excitotoxic Neuron Death into a Caspase-independent Cell Death
Glutamate receptor overactivation contributes to neuron death after stroke, trauma, and epileptic seizures. Exposure of cultured rat hippocampal neurons to the selective glutamate receptor agonist N-methyl-d-aspartate (300 μm, 5 min) or to the apoptosis-inducing protein kinase inhibitor staurosporin...
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Veröffentlicht in: | The Journal of biological chemistry 2000-06, Vol.275 (22), p.17064-17071 |
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Sprache: | eng |
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Zusammenfassung: | Glutamate receptor overactivation contributes to neuron death after stroke, trauma, and epileptic seizures. Exposure of cultured rat hippocampal neurons to the selective glutamate receptor agonist N-methyl-d-aspartate (300 μm, 5 min) or to the apoptosis-inducing protein kinase inhibitor staurosporine (300 nm) induced a delayed neuron death. In both cases, neuron death was preceded by the mitochondrial release of the pro-apoptotic factor cytochrome c. Unlike staurosporine, the N-methyl-d-aspartate-induced release of cytochrome c did not lead to significant activation of caspase-3, the main caspase involved in the execution of neuronal apoptosis. In contrast, activation of the Ca2+-activated neutral protease calpain I was readily detectable after the exposure toN-methyl-d-aspartate. In a neuronal cell-free apoptosis system, calpain I prevented the ability of cytochromec to activate the caspase cascade by inhibiting the processing of procaspase-3 and -9 into their active subunits. In the hippocampal neuron cultures, the inhibition of calpain activity restored caspase-3-like protease activity after an exposure toN-methyl-d-aspartate. Our data demonstrate the existence of signal transduction pathways that prevent the entry of cells into a caspase-dependent cell death program after the mitochondrial release of cytochrome c. |
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ISSN: | 0021-9258 1083-351X |
DOI: | 10.1074/jbc.275.22.17064 |