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Subcellular Fractionation for ERK Activation Upon Mitochondrial-derived Peptide Treatment
Published on: September 25, 2017
MEK and ERK protect hypoxic cortical neurons via phosphorylation of Bad
Kunlin Jin1, Xiao Ou Mao, Yonghua Zhu
1Buck Institute for Age Research, Novato, California 94945, USA. kjin@buckinstitute.org
Abstract:
We investigated the role of mitogen-activated protein kinase (MAPK) pathways in hypoxic neuronal injury using primary cultures from murine cerebral cortex. Hypoxia caused the death of approximately 50% of neurons at 16 h and approximately 65% of neurons at 24 h. This was associated with phospho-activation of the MAPK/extracellular signal-regulated kinase (ERK) kinase MEK1/2 and its downstream target ERK1/2, but not p38 MAPK or c-Jun N-terminal kinase (JNK), as detected by western blotting. The MEK1/2 inhibitor, PD98059, increased neuronal death in hypoxic cultures, suggesting that MEK1/2 promotes neuronal survival, whereas the p38 inhibitors, SB202190 and SB203580, had no effect. To identify downstream effects of ERK1/2 that might regulate hypoxic neuronal death, we measured hypoxia-induced phosphorylation of three ERK1/2 targets: the 90-kDa ribosomal protein S6 kinase (RSK), the transcription factor ELK1, and the pro-apoptotic Bcl-2 family protein Bad. We observed increased abundance of inactivated (phospho-)Bad, but no change in phospho-RSK or phospho-ELK1. Moreover, the MEK inhibitor PD98059 reduced phospho-inactivation of Bad in hypoxic cultures. These findings suggest that a cell-survival program involving phospho-activation of MEK1/2 and ERK1/2 and inactivation of Bad is mobilized in hypoxic neurons, and may help to regulate neuronal fate following hypoxic-ischemic injury.
Insights
Mitogen-activated protein kinase (MAPK) pathways, specifically MEK1/2 and ERK1/2, promote neuronal survival during hypoxic injury. This pathway inactivates the pro-apoptotic protein Bad, suggesting a protective role in brain cells.
Area of Science:
- Neuroscience
- Molecular Biology
- Cell Biology
Background:
- Hypoxic neuronal injury is a significant cause of brain damage.
- Mitogen-activated protein kinase (MAPK) pathways are implicated in cellular stress responses.
Purpose of the Study:
- To investigate the role of MAPK pathways in hypoxic neuronal injury.
- To identify specific MAPK signaling components and their downstream targets involved in neuronal survival or death under hypoxia.
Main Methods:
- Primary murine cerebral cortex neuronal cultures were subjected to hypoxia.
- Western blotting was used to detect the phosphorylation status of MAPK pathway components (MEK1/2, ERK1/2, p38, JNK) and their targets (RSK, ELK1, Bad).
- Pharmacological inhibitors (PD98059, SB202190, SB203580) were used to probe pathway function.
Main Results:
- Hypoxia induced significant neuronal death.
- Phospho-activation of MEK1/2 and ERK1/2 was observed, but not p38 or JNK.
- MEK1/2 inhibition exacerbated neuronal death, while p38 inhibition had no effect.
- ERK1/2 signaling led to the inactivation of the pro-apoptotic protein Bad.
Conclusions:
- A cell-survival pathway involving MEK1/2 and ERK1/2 activation is activated in hypoxic neurons.
- This pathway promotes neuronal survival by inactivating Bad.
- Understanding this pathway may offer therapeutic targets for hypoxic-ischemic brain injury.
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