Compensatory caspase activation in MPP+-induced cell death in dopaminergic neurons |
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Authors: | J. L. Y. Chee X. L. Guan J. Y. Lee B. Dong S. M. Leong E. H. Ong A. K. F. Liou T. M. Lim |
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Affiliation: | (1) Department of Biological Sciences, Faculty of Science, National University of Singapore, 14 Science Drive 4, 117542, Singapore;(2) Institute of Neurodegenerative Disorders, University of Pittsburgh School of Medicine, Pittsburgh, Pennsylvania 15261, USA |
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Abstract: | Many have hypothesized that cell death in Parkinsons disease is via apoptosis and, specifically, by the mitochondrial-mediated apoptotic pathway. We tested this hypothesis using a mouse dopaminergic cell line of mesencephalic origin, MN9D, challenged with the Parkinsonism-causing neurotoxin MPP+ (1-methyl-4-phenylpyridinium ion). Apoptosis was the main mode of cell death when the cells were subjected to MPP+ treatment under serum-free conditions for 24 h. Caspase-3 and caspase-9, however, were not activated, thus indicating the existence of alternate or compensatory cell death pathway(s) in dopaminergic neuronal cells. Using caspase inhibitors, we demonstrated that these pathways involve caspase-2, –8, –6 and –7. A time-course study indicated that activation of caspase-2 and –8 occurred upstream of caspase-6 and caspase-7. Upon MPP+ challenge, the apoptosis-inducing factor was translocated from the mitochondria into the MN9D cytosol and nucleus. These results suggest the existence of alternative apoptotic pathways in dopaminergic neurons.Received 20 September 2004; received after revision 5 November 2004; accepted 22 November 2004 |
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Keywords: | Caspase AIF apoptosis cytochrome c dopaminergic neuron neurotoxin Parkinson /content/g4cgfq67rmy4ryu1/xxlarge8217.gif" alt=" rsquo" align=" BASELINE" BORDER=" 0" >s disease |
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