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Published on: May 26, 2017
Activated JNK phosphorylates the c-terminal domain of MLK2 that is required for MLK2-induced apoptosis
1Trescowthick Research Centre, Peter MacCallum Cancer Institute, Melbourne 8006, Victoria, Australia.
Abstract:
MAP kinase signaling pathways are important mediators of cellular responses to a wide variety of stimuli. Signals pass along these pathways via kinase cascades in which three protein kinases are sequentially phosphorylated and activated, initiating a range of cellular programs including cellular proliferation, immune and inflammatory responses, and apoptosis. One such cascade involves the mixed lineage kinase, MLK2, signaling through MAP kinase kinase 4 and/or MAP kinase kinase 7 to the SAPK/JNK, resulting in phosphorylation of transcription factors including the oncogene, c-jun. Recently we showed that MLK2 causes apoptosis in cultured neuronal cells and that this effect is dependent on activation of the JNK pathway (Liu, Y. F., Dorow, D. S., and Marshall, J. (2000) J. Biol. Chem. 275, 19035-19040). Furthermore, dominant-negative MLK2 blocked apoptosis induced by polyglutamine-expanded huntingtin protein, the product of the mutant Huntington's disease gene. Here we show that as well as activating the stress-signaling pathway, MLK2 is a target for phosphorylation by activated JNK. Phosphopeptide mapping of MLK2 proteins revealed that activated JNK2 phosphorylates multiple sites mainly within the noncatalytic C-terminal region of MLK2 including the C-terminal 100 amino acid peptide. In addition, MLK2 is phosphorylated in vivo within several of the same C-terminal peptides phosphorylated by JNK2 in vitro, and this phosphorylation is increased by cotransfection of JNK2 and treatment with the JNK activator, anisomycin. Cotransfection of dominant-negative JNK kinase inhibits phosphorylation of kinase-negative MLK2 by anisomycin-activated JNK. Furthermore, we show that the N-terminal region of MLK2 is sufficient to activate JNK but that removal of the C-terminal domain abrogates the apoptotic response. Taken together, these data indicate that the apoptotic activity of MLK2 is dependent on the C-terminal domain that is the main target for MLK2 phosphorylation by activated JNK.
Insights
Mixed Lineage Kinase 2 (MLK2) triggers apoptosis in neuronal cells by activating the JNK pathway. Activated JNK phosphorylates MLK2
Area of Science:
- Cellular signaling pathways
- Neuroscience
- Molecular biology
Background:
- Mitogen-activated protein (MAP) kinase pathways mediate cellular responses to stimuli.
- These pathways involve kinase cascades activating cellular programs like proliferation and apoptosis.
- Mixed Lineage Kinase 2 (MLK2) is implicated in neuronal apoptosis via the JNK pathway.
Purpose of the Study:
- To investigate the interaction between MLK2 and the JNK pathway.
- To determine if MLK2 is a target for JNK-mediated phosphorylation.
- To elucidate the role of MLK2 phosphorylation in its apoptotic activity.
Main Methods:
- Phosphopeptide mapping to identify JNK2 phosphorylation sites on MLK2.
- In vivo phosphorylation studies using MLK2 and JNK2 cotransfection.
- Assessment of MLK2's apoptotic activity using truncated mutants.
Main Results:
- Activated JNK2 phosphorylates MLK2 at multiple sites within its C-terminal region.
- MLK2 is phosphorylated in vivo within the same C-terminal peptides targeted by JNK2.
- The N-terminal region of MLK2 activates JNK, but the C-terminal domain is essential for apoptosis.
Conclusions:
- MLK2's apoptotic activity is dependent on its C-terminal domain.
- This C-terminal domain is a primary target for phosphorylation by activated JNK.
- MLK2 phosphorylation by JNK is a key regulatory step in MLK2-induced apoptosis.
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