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A kinase-independent function of Ask1 in caspase-independent cell death
S J Charette1, H Lambert, J Landry
1Centre de recherche en cancérologie de l'Université Laval, L'Hôtel-Dieu de Québec, 9 rue McMahon, Québec G1R 2J6, Canada.
Abstract:
Ask1 (apoptosis signal-regulating kinase 1) is activated as a consequence of cell exposure to a variety of stresses and can then initiate apoptosis. A known pathway of apoptosis downstream of Ask1 involves the activation of the stress-activated protein kinases, the release of cytochrome c from mitochondria, the activation of caspases, and the fragmentation of nuclei. Here, we characterized a novel mechanism of Ask1-mediated cell killing that is triggered by the interaction with Daxx. Co-transfection of Ask1 and Daxx induced a caspase-independent cell-death process characterized at the morphological level by distinctive crumpled nuclei easily distinguishable from the condensed and fragmented nuclei seen during classical caspase-dependent apoptosis. The kinase activity of Ask1 was not involved in this process, because mutants lacking kinase activity were as efficient as wild type Ask1 in mediating Daxx-induced cell death. Ask1N, a deletant that lacks the C-terminal half including the kinase domain of Ask1, was constitutively active in producing crumpled nuclei. In contrast, Ask1DeltaN, the reciprocal deletant that possesses constitutive kinase activity, produced fragmented nuclei typical of caspase-dependent death processes. We conclude that in addition to a caspase-dependent pro-apoptotic function that depends on its kinase activity, Ask1 possesses a caspase-independent killing function that is independent on its kinase activity and is activable by interaction with Daxx. In the physiological situation, such an activity is induced as a consequence of the translocation of Daxx from the nucleus to the cytoplasm, a condition that occurs following activation of the death receptor Fas.
Insights
Apoptosis signal-regulating kinase 1 (Ask1) triggers cell death through both caspase-dependent and independent pathways. Interaction with Daxx activates a novel, kinase-independent Ask1 cell-killing mechanism, distinct from classical apoptosis.
Area of Science:
- Cellular biology
- Molecular mechanisms of cell death
- Signal transduction pathways
Background:
- Apoptosis signal-regulating kinase 1 (Ask1) is activated by cellular stress and initiates apoptosis via caspase-dependent pathways.
- This involves stress-activated protein kinases, mitochondrial cytochrome c release, caspase activation, and nuclear fragmentation.
Purpose of the Study:
- To characterize a novel mechanism of Ask1-mediated cell killing involving interaction with Daxx.
- To differentiate this mechanism from classical caspase-dependent apoptosis.
Main Methods:
- Co-transfection of Ask1 and Daxx in cells.
- Analysis of cell death morphology (crumpled vs. fragmented nuclei).
- Utilizing Ask1 kinase-inactive mutants and deletion mutants (Ask1N, Ask1DeltaN).
Main Results:
- Ask1 and Daxx co-transfection induced caspase-independent cell death with distinctive crumpled nuclei.
- Ask1 kinase activity was not required for Daxx-mediated cell death.
- Ask1N (lacking kinase domain) induced crumpled nuclei, while Ask1DeltaN (constitutively active kinase) induced fragmented nuclei.
Conclusions:
- Ask1 possesses a dual function: a caspase-dependent pro-apoptotic role requiring kinase activity, and a caspase-independent killing function activated by Daxx interaction, independent of kinase activity.
- This caspase-independent function is physiologically induced by Daxx translocation to the cytoplasm upon Fas receptor activation.