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Activation of Apoptosis by Cytoplasmic Microinjection of Cytochrome c
Published on: June 29, 2011
Regulation of neuronal cell death by c-Abl-Hippo/MST2 signaling pathway
Weizhe Liu1, Junbing Wu, Lei Xiao
1Institute of Cancer Stem Cell, Dalian Medical University Cancer Center, Liaoning, China.
Background:
Mammalian Ste20-like kinases (MSTs) are the mammalian homologue of Drosophila hippo and play critical roles in regulation of cell death, organ size control, proliferation and tumorigenesis. MSTs exert pro-apoptotic function through cleavage, autophosphorylation and in turn phosphorylation of downstream targets, such as Histone H2B and FOXO (Forkhead box O). Previously we reported that protein kinase c-Abl mediates oxidative stress-induced neuronal cell death through phosphorylating MST1 at Y433, which is not conserved among mammalian MST2, Drosophila Hippo and C.elegans cst-1/2.
Methodology/Principal Findings:
Using immunoblotting, in vitro kinase and cell death assay, we demonstrate that c-Abl kinase phosphorylates MST2 at an evolutionarily conserved site, Y81, within the kinase domain. We further show that the phosphorylation of MST2 by c-Abl leads to the disruption of the interaction with Raf-1 proteins and the enhancement of homodimerization of MST2 proteins. It thereby enhances the MST2 activation and induces neuronal cell death.
Conclusions/Significance:
The identification of the c-Abl tyrosine kinase as a novel upstream activator of MST2 suggests that the conserved c-Abl-MST signaling cascade plays an important role in oxidative stress-induced neuronal cell death.
Insights
The protein kinase c-Abl phosphorylates MST2, enhancing its activation and promoting neuronal cell death during oxidative stress. This identifies a new signaling pathway crucial for cell death regulation.
Area of Science:
- Cellular signaling pathways
- Molecular biology
- Neuroscience
Background:
- Mammalian Ste20-like kinases (MSTs), homologues of Drosophila hippo, regulate cell death, organ size, proliferation, and tumorigenesis.
- MSTs induce apoptosis via autophosphorylation and phosphorylation of targets like Histone H2B and FOXO.
- Previous work showed c-Abl phosphorylates MST1 at Y433, a site not conserved in MST2.
Purpose of the Study:
- To investigate the interaction between c-Abl and MST2.
- To identify the specific phosphorylation site of MST2 by c-Abl.
- To elucidate the functional consequences of MST2 phosphorylation by c-Abl in neuronal cell death.
Main Methods:
- Immunoblotting
- In vitro kinase assays
- Cell death assays
Main Results:
- c-Abl kinase phosphorylates MST2 at a conserved site, Y81, within the kinase domain.
- Phosphorylation of MST2 by c-Abl disrupts its interaction with Raf-1.
- MST2 phosphorylation enhances MST2 homodimerization, activation, and subsequent neuronal cell death.
Conclusions:
- c-Abl is identified as a novel upstream activator of MST2.
- The conserved c-Abl-MST2 signaling cascade is implicated in oxidative stress-induced neuronal cell death.
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