Chronic low-dose oxidative stress induces caspase-3-dependent PKCδ proteolytic activation and apoptosis in a cell culture model of dopaminergic neurodegeneration

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Abstract

Oxidative stress has been implicated as a key event in the degenerative process of dopaminergic neurons; however, the cellular mechanisms underlying chronic oxidative stress-induced neurodegeneration remain to be established. In this study, N27 cells, a dopaminergic neuronal cell line derived from rat mesencephalon, exposed to low doses of H2O2 (0-30 μM for 12-24 hr) exhibited dose- and time-dependent increases in cytotoxicity and ROS generation. In addition, the H2O2-induced neurotoxicity was accompanied by increased caspase-3 activity and PKCδ cleavage. Notably, treatment with antioxidants Trolox and MnTBAP or PKCδ cleavage inhibitor z-DIPD-fmk significantly protected against oxidative stress-induced apoptotic cell death. These results demonstrate that the N27 cell line is a useful model for the study of the chronic low-dose oxidative stress-induced apoptotic cell death cascade and that caspase-3-dependent PKCδ proteolytic activation may be important in the apoptotic process in dopaminergic neurons undergoing chronic oxidative insult. © 2008 New York Academy of Sciences.

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Carvour, M., Song, C., Kaul, S., Anantharam, V., Kanthasamy, A., & Kanthasamy, A. (2008). Chronic low-dose oxidative stress induces caspase-3-dependent PKCδ proteolytic activation and apoptosis in a cell culture model of dopaminergic neurodegeneration. In Annals of the New York Academy of Sciences (Vol. 1139, pp. 197–205). Blackwell Publishing Inc. https://doi.org/10.1196/annals.1432.020

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