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Neutralization of TRAIL death pathway protects human neuronal cell line from beta-amyloid toxicity
G Cantarella1, D Uberti, T Carsana
1Department of Biomedical Sciences and Biotechnologies, University of Brescia, Italy.
Abstract:
Here we report that a novel member of the TNF-alpha family, TNF-related apoptosis-inducing ligand (TRAIL), contributes substantially to amyloid-induced neurotoxicity in human SH-SY5Y neuronal cell line. Involvement of TRAIL in the amyloid-induced cell death is supported by cDNA array, Northern blot, and Western blot data, demonstrating increased TRAIL expression after treatment of the cells with a neurotoxic fragment of amyloid protein (betaAP). TRAIL was also found to be released in the culture media after betaAP treatment with a time-course overlapping to contents of the intracellular protein. Contribution of TRAIL to betaAP neurotoxicity is demonstrated by data showing that TRAIL-neutralizing monoclonal antibody protects neuronal SH-SY5Y cells from betaAP neurotoxicity. Moreover, exposure of neuronal SH-SY5Y cells to TRAIL leads to cell death, indicating that this substance per se is endowed with neurotoxic properties. We also found that, similarly to betaAP and TRAIL, activation of the death-domain adaptor protein FADD results in neuronal cell death. Lack of FADD function, by overexpression of its dominant negative, rescued cells from either TRAIL- or betaAP-induced neurotoxicity, supporting the hypothesis that these three molecules share common intracellular pathways. Finally, we found that betaAP strongly activated caspase-8, and the cell-permeable, selective caspase-8 inhibitor z-IETD-FMK prevents both betaAP- and TRAIL-induced neurotoxicity. In view of TRAIL's potency in inducing neuronal death, and its role as mediator of betaAP, it is plausible to hypothesize that TRAIL can be regarded as a molecule that provides substantial contribution to betaAP-dependent cell death, which takes part in the progression of the neurodegenerative process and related chronic inflammatory response.
Insights
TNF-related apoptosis-inducing ligand (TRAIL) significantly contributes to amyloid-beta-induced neurotoxicity by activating caspase-8 and FADD pathways. Neutralizing TRAIL protects neurons, highlighting its role in neurodegenerative diseases.
Area of Science:
- Neuroscience
- Cell Biology
- Molecular Biology
Background:
- Amyloid-beta protein fragments are implicated in neurodegenerative diseases.
- Tumor Necrosis Factor (TNF)-alpha family members play roles in cell death pathways.
- Neuronal cell death mechanisms in neurodegeneration are not fully understood.
Purpose of the Study:
- To investigate the role of TNF-related apoptosis-inducing ligand (TRAIL) in amyloid-beta-induced neurotoxicity.
- To elucidate the molecular pathways involved in amyloid-beta and TRAIL-mediated neuronal cell death.
Main Methods:
- Utilized human SH-SY5Y neuronal cell line.
- Assessed TRAIL expression and release using cDNA array, Northern blot, and Western blot.
- Employed TRAIL-neutralizing monoclonal antibody and dominant-negative FADD.
- Investigated caspase-8 activation using a specific inhibitor (z-IETD-FMK).
Main Results:
- Amyloid-beta treatment increased TRAIL expression and release in neuronal cells.
- TRAIL exposure induced neuronal cell death, demonstrating its intrinsic neurotoxic properties.
- Both amyloid-beta and TRAIL-induced neurotoxicity were dependent on FADD and caspase-8 activation.
- Blocking TRAIL or caspase-8 inhibited amyloid-beta-induced neuronal death.
Conclusions:
- TRAIL is a significant mediator of amyloid-beta-induced neurotoxicity in human neurons.
- Amyloid-beta and TRAIL share common intracellular death pathways involving FADD and caspase-8.
- TRAIL represents a potential therapeutic target for neurodegenerative conditions associated with amyloid pathology.