Calpain-2/p35-p25/Cdk5 pathway is involved in the neuronal apoptosis induced by polybrominated diphenyl ether-153
Hongmei Zhang1, Lijun Chang1, Huajun Zhang1
1Department of Environmental Health, Shanxi Medical University, Taiyuan 030001, China.
Abstract:
Polybrominated diphenyl ethers (PBDEs) have been demonstrated to induce neurotoxicity in experimental rats and mice, with neuronal apoptosis as one of the major mechanisms, however, the mechanisms underlying PBDEs-induced neuronal apoptosis remain unclear. In this study, we aimed to investigate the role of calpain/p35-p25/Cdk5 pathway in BDE-153-induced neuronal apoptosis in the hippocampus and primary neurons in rats. Results showed that compared to the controls, neuronal apoptosis was significantly increased in vivo and ex vivo, as manifested by the increased hippocampus TUNEL-positive cell rates, apoptotic neurons in Hoechst and AO/EB staining, and the increased LDH activity and percentage of Annexin V-positive cells in rat hippocampus and primary neurons. Calpain activity was significantly increased in all the BDE-153-treated groups in vivo and ex vivo when compared to non-treatment controls. In addition, we showed that calpain-2 accounted for the calpain activation instead of calpain-1, as demonstrated by the up-regulated mRNA and protein expressions in calpain-2 but not calpain-1. Activated calpain truncated p35 into p25, which resulted in the p25/Cdk5 formation and activation. Calpain inhibitor PD150606 or p25/Cdk5 inhibitor Roscovitine relieved neuronal apoptosis mainly via inhibiting the p25/Cdk5 activation. Overall, the findings suggested that calpain-2/p35-p25/Cdk5 pathway was involved in BDE-153-induced neuronal apoptosis, which provides novel insight into the mechanisms of PBDE neurotoxicity.
Insights
Polybrominated diphenyl ethers (PBDEs) cause neurotoxicity via neuronal apoptosis. This study reveals the calpain-2/p35-p25/Cdk5 pathway is crucial in BDE-153-induced neuronal cell death in rats.
Area of Science:
- Neuroscience
- Toxicology
- Cell Biology
Background:
- Polybrominated diphenyl ethers (PBDEs) are environmental contaminants linked to neurotoxicity.
- Neuronal apoptosis is a key mechanism in PBDE-induced neurotoxicity, but its underlying pathways are not fully understood.
Purpose of the Study:
- To investigate the role of the calpain/p35-p25/Cdk5 pathway in BDE-153-induced neuronal apoptosis in rat hippocampus and primary neurons.
Main Methods:
- In vivo and ex vivo studies using rat hippocampus and primary neurons.
- Assessed neuronal apoptosis via TUNEL staining, Hoechst/AO/EB staining, LDH activity, and Annexin V assay.
- Measured calpain activity, calpain-1 and calpain-2 expression, and p35/p25/Cdk5 activation.
- Utilized calpain inhibitor (PD150606) and p25/Cdk5 inhibitor (Roscovitine).
Main Results:
- BDE-153 significantly increased neuronal apoptosis and calpain activity in rat hippocampus and primary neurons.
- Calpain-2, not calpain-1, was upregulated and responsible for calpain activation.
- Activated calpain truncated p35 to p25, leading to p25/Cdk5 complex formation and activation.
- Inhibitors of calpain and p25/Cdk5 significantly reduced BDE-153-induced neuronal apoptosis.
Conclusions:
- The calpain-2/p35-p25/Cdk5 pathway is critically involved in BDE-153-induced neuronal apoptosis.
- This finding offers new insights into the mechanisms of PBDE neurotoxicity.
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