Abstract
A number of reports indicate the potential for redox signalling via extracellular signal-regulated protein kinases (ERK) during neuronal injury. We have previously found that sustained ERK activation contributes to toxicity elicited by 6-hydroxydopamine (6-OHDA) in the B65 neuronal cell line. To determine whether reactive oxygen species (ROS) play a role in mediating ERK activation and 6-OHDA toxicity, we examined the effects of catalase, superoxide dismutase (SOD1), and metalloporphyrin antioxidants ('SOD mimetics') on 6-OHDA-treated cells. We found that catalase and metalloporphyrin antioxidants not only conferred protection against 6-OHDA but also inhibited development of sustained ERK phosphorylation in both differentiated and undifferentiated B65 cells. However, exogenously added SOD1 and heat-inactivated catalase had no effect on either toxicity or sustained ERK phosphorylation. This correlation between antioxidant protection and inhibition of 6-OHDA-induced sustained ERK phosphorylation suggests that redox regulation of ERK signalling cascades may contribute to neuronal toxicity.
MeSH Terms
Animals
Antioxidants/metabolism,pharmacology
Catalase/metabolism,pharmacology
Cell Differentiation/drug effects
Cell Line, Tumor
Enzyme Activation
Metalloporphyrins/metabolism,pharmacology
Mitogen-Activated Protein Kinases/metabolism
Neurons/drug effects
Oxidopamine/toxicity
Phosphorylation
Rats
Reactive Oxygen Species/metabolism
Superoxide Dismutase/metabolism,pharmacology
Chemicals
Antioxidants
Metalloporphyrins
Reactive Oxygen Species
Oxidopamine
Catalase
Superoxide Dismutase
Mitogen-Activated Protein Kinases
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Kulich Scott M
Department of Pathology, Division of Neuropathology, University of Pittsburgh School of Medicine, Pittsburgh, PA 15213, USA.
Chu Charleen T
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