BimEL up‐regulation potentiates AIF translocation and cell death in response to MPTP
- 7 June 2005
- journal article
- research article
- Published by Wiley in The FASEB Journal
- Vol. 19 (10) , 1350-1352
- https://doi.org/10.1096/fj.04-3258fje
Abstract
This study attempted to elucidate the signaling mechanism underlying dopaminergic cell death in the MPP+ model for Parkinson's disease. In neuronal-differentiated PC12 cells, through the regulation by activated JNK and c-jun, BimEL expression was markedly increased in response to MPP+ treatment, which led to the cell degeneration. In lieu of Smac translocation as seen in other paradigms, up-regulation of BimEL effected an increase in calpain I activity that, in turn, mediated AIF release from the mitochondria. In support, we found that knocking down BimEL expression resulted in a decrease in calpain I activity, as well as AIF release from the mitochondria and cell death. Finally, inhibition of calpain activity mitigated AIF release from the mitochondria and cell death. Under cell-free conditions, activated purified calpain I could induce the release of AIF from isolated mitochondria without the participation of BimEL or activated JNK, suggesting that AIF release is a direct consequence of calpain I activity. In concert, the results suggest a novel signaling pathway for dopaminergic cell degeneration, in which MPP+ induces the up-regulation of BimEL, which in turn potentiates an elevation in calpain I activity that mediates AIF release and cell death in a caspase-independent manner.Keywords
Funding Information
- National Institutes of Health (NS44178, NS43802, NS45048)
- National Institute of Neurological Disorders and Stroke
- American Heart Association (240135N)
- Energy Information Administration
- NIH Clinical Center
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