Paraoxon induces apoptosis in EL4 cells via activation of mitochondrial pathways
A M Saleh1, C Vijayasarathy, L Masoud
1Department of Biochemistry, Faculty of Medicine and Health Sciences, United Arab Emirates University, PO Box 17 666, Al Ain, United Arab Emirates. asaleh@uaeu.ac.ae
Abstract:
The toxicity of organophosphorus compounds, such as paraoxon (POX), is due to their anticholinesterase action. Recently, we have shown that, at noncholinergic doses (1 to 10 nM), POX (the bioactive metabolite of parathion) causes apoptotic cell death in murine EL4 T-lymphocytic leukemia cell line through activation of caspase-3. In this study, by employing caspase-specific inhibitors, we extend our observations to elucidate the sequence of events involved in POX-stimulated apoptosis. Pretreatment of EL4 cells with the caspase-9-specific inhibitor zLEHD-fmk attenuated POX-induced apoptosis in a dose-dependent manner, whereas the caspase-8 inhibitor zIETD-fmk had no effect. Furthermore, the activation of caspase-9, -8, and -3 in response to POX treatment was completely inhibited in the presence of zLEHD-fmk, implicating the involvement of caspase 9-dependent mitochondrial pathways in POX-stimulated apoptosis. Indeed, under both in vitro and in vivo conditions, POX triggered a dose- and time-dependent translocation of cytochrome c from mitochondria into the cytosol, as assessed by Western blot analysis. Investigation of the mechanism of cytochrome c release revealed that POX disrupted mitochondrial transmembrane potential. Neither this effect nor cytchrome c release was dependent on caspase activation, since the general inhibitor of the caspase family zVAD-fmk did not influence both processes. Finally, POX treatment also resulted in a time-dependent up-regulation and translocation of the proapoptotic molecule Bax to mitochondria. Inhibition of this event by zVAD-fmk suggests that the activation and translocation of Bax to mitochondria is subsequent to activation of the caspase cascades. The results indicate that POX induces apoptosis in EL4 cells through a direct effect on mitochondria by disrupting its transmembrane potential, causing the release of cytochrome c into the cytosol and subsequent activation of caspase-9. Inhibition of this specific pathway might provide a useful strategy to minimize organophosphate-induced poisoning.
Insights
Paraoxon (POX) induces T-lymphoma cell death via mitochondrial damage, not anticholinesterase action. This pathway involves cytochrome c release and caspase-9 activation, offering a target for organophosphate poisoning treatment.
Area of Science:
- Toxicology
- Cell Biology
- Biochemistry
Background:
- Organophosphorus compounds, like paraoxon (POX), are known for anticholinesterase activity.
- Non-cholinergic doses of POX induce apoptotic cell death in murine EL4 T-lymphocytic leukemia cells via caspase-3 activation.
Purpose of the Study:
- To elucidate the sequence of events in POX-stimulated apoptosis using caspase-specific inhibitors.
- To investigate the role of mitochondrial pathways in POX-induced apoptosis.
Main Methods:
- Utilized caspase-specific inhibitors (zLEHD-fmk, zIETD-fmk, zVAD-fmk).
- Assessed cytochrome c translocation using Western blot analysis.
- Measured mitochondrial transmembrane potential.
- Analyzed Bax protein translocation to mitochondria.
Main Results:
- Caspase-9 inhibition (zLEHD-fmk) attenuated POX-induced apoptosis, while caspase-8 inhibition (zIETD-fmk) had no effect.
- POX treatment caused dose- and time-dependent cytochrome c release from mitochondria and disrupted mitochondrial transmembrane potential, independent of caspase activation.
- POX induced Bax translocation to mitochondria, which was subsequent to caspase cascade activation.
Conclusions:
- POX induces apoptosis in EL4 cells through direct mitochondrial damage, including disruption of membrane potential and cytochrome c release, leading to caspase-9 activation.
- Targeting this POX-induced mitochondrial pathway could be a strategy to mitigate organophosphate poisoning.
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