Thimerosal induces apoptosis in a neuroblastoma model via the cJun N-terminal kinase pathway
Michelle L Herdman1, Aileen Marcelo, Ying Huang
1Department of Pharmacology, Joan C. Edwards School of Medicine, Marshall University, 1542 Spring Valley Drive, Huntington, WV 25704, USA.
Abstract:
The cJun N-terminal kinase (JNK)-signaling pathway is activated in response to a variety of stimuli, including environmental insults, and has been implicated in neuronal apoptosis. In this study, we investigated the role that the JNK pathway plays in neurotoxicity caused by thimerosal, an ethylmercury-containing preservative. SK-N-SH cells treated with thimerosal (0-10 microM) showed an increase in the phosphorylated (active) form of JNK and cJun with 5 and 10 microM thimerosal treatment at 2 and 4 h. To examine activator protein-1 (AP-1) transcription, cells were transfected with a pGL2 vector containing four AP-1 consensus sequences and then treated with thimerosal (0-2.5 microM) for 24 h. Luciferase studies showed an increase in AP-1 transcriptional activity upon thimerosal administration. To determine the components of the AP-1 complex, cells were transfected with a dominant negative to either cFos (A-Fos) or cJun (TAM67). Reporter analysis showed that TAM67, but not A-Fos, decreased AP-1 transcriptional activity, indicating a role for cJun in this pathway. To assess which components are essential to apoptosis, cells were treated with a cell-permeable JNK inhibitor II (SP600125) or transfected with TAM67, and the downstream effectors of apoptosis were analyzed. Cells pretreated with SP600125 showed decreases in activation of caspases 9 and 3, decreases in degradation of poly(ADP-ribose) polymerase (PARP), and decreased levels of proapoptotic Bim, in comparison to cells treated with thimerosal alone. However, cells transfected with TAM67 showed no changes in those same components. Taken together, these results indicate that thimerosal-induced neurotoxicity occurs through the JNK-signaling pathway, independent of cJun activation, leading ultimately to apoptotic cell death.
Insights
Thimerosal neurotoxicity involves the cJun N-terminal kinase (JNK) pathway, leading to apoptosis. While JNK activation occurs, cJun is not essential for this thimerosal-induced cell death process.
Area of Science:
- Neuroscience
- Molecular Biology
- Toxicology
Background:
- The cJun N-terminal kinase (JNK) signaling pathway is activated by environmental stressors and linked to neuronal apoptosis.
- Thimerosal, an ethylmercury preservative, is a potential neurotoxic agent.
Purpose of the Study:
- To investigate the role of the JNK pathway in thimerosal-induced neurotoxicity.
- To determine the involvement of activator protein-1 (AP-1) and its components, cJun and cFos, in this process.
Main Methods:
- SK-N-SH cells were treated with thimerosal and analyzed for JNK and cJun phosphorylation.
- AP-1 transcriptional activity was assessed using luciferase reporter assays.
- Dominant-negative constructs for cFos and cJun were used to probe pathway components.
- Apoptosis was evaluated using a JNK inhibitor (SP600125) and downstream effector analysis.
Main Results:
- Thimerosal treatment increased phosphorylated JNK and cJun, and enhanced AP-1 transcriptional activity.
- Dominant-negative cJun (TAM67), but not cFos (A-Fos), reduced AP-1 activity.
- Inhibition of JNK signaling decreased caspase activation, PARP degradation, and Bim levels.
- Blocking cJun activation did not affect these downstream apoptotic markers.
Conclusions:
- Thimerosal-induced neurotoxicity operates via the JNK signaling pathway.
- This neurotoxicity is independent of cJun activation.
- The pathway ultimately leads to apoptotic cell death.
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