Dual role of Src kinase in governing neuronal survival
M Iqbal Hossain1, Ashfaqul Hoque1, Guillaume Lessene2
1Department of Biochemistry and Molecular Biology, Bio21 Molecular Science and Biotechnology Institute, University of Melbourne, Parkville 3010, VIC, Australia.
Background:
Src-family kinases (SFKs) are involved in neuronal survival and their aberrant regulation contributes to neuronal death. However, how they control neuronal survival and death remains unclear.
Objective:
To define the effect of inhibition of Src activity and expression on neuronal survival.
Results:
In agreement with our previous findings, we demonstrated that Src was cleaved by calpain to form a 52-kDa truncated fragment in neurons undergoing excitotoxic cell death, and expression of the recombinant truncated Src fragment induced neuronal death. The data confirm that the neurotoxic signaling pathways are intact in the neurons we used for our study. To define the functional role of neuronal SFKs, we treated these neurons with SFK inhibitors and discovered that the treatment induced cell death, suggesting that the catalytic activity of one or more of the neuronal SFKs is critical to neuronal survival. Using small hairpin RNAs that suppress Src expression, we demonstrated that Src is indispensable to neuronal survival. Additionally, we found that neuronal death induced by expression of the neurotoxic truncated Src mutant, treatment of SFK inhibitors or knock-down of Src expression caused inhibition of the neuroprotective protein kinases Erk1/2, or Akt.
Conclusions:
Src is critical to both neuronal survival and death. Intact Src sustains neuronal survival. However, in the excitotoxic condition, calpain cleavage of Src generates a neurotoxic truncated Src fragment. Both intact Src and the neurotoxic truncated Src fragment exert their biological actions by controlling the activities of neuroprotective protein kinases.
Insights
Src-family kinases (SFKs) are crucial for neuronal survival. Aberrant Src regulation or cleavage into a toxic fragment contributes to neuronal death by impacting protective kinases.
Area of Science:
- Neuroscience
- Molecular Biology
- Cell Signaling
Background:
- Src-family kinases (SFKs) play a role in neuronal survival, but their precise function in neuronal death is not fully understood.
- Dysregulation of SFKs is implicated in neuronal demise.
Purpose of the Study:
- To investigate the impact of inhibiting Src activity and expression on neuronal survival.
- To elucidate the mechanisms by which Src influences neuronal fate.
Main Methods:
- Utilized Src inhibitors and small hairpin RNAs (shRNAs) to modulate Src activity and expression in neurons.
- Analyzed the cleavage of Src by calpain and its effect on neuronal death.
- Assessed the activation of downstream signaling pathways, including Erk1/2 and Akt.
Main Results:
- Src cleavage by calpain produces a 52-kDa neurotoxic fragment during excitotoxic cell death.
- Inhibition of SFK activity or Src expression led to neuronal death, highlighting Src's essential role in survival.
- Neuronal death induced by Src manipulation or excitotoxicity inhibited the activity of neuroprotective kinases Erk1/2 and Akt.
Conclusions:
- Src is critical for maintaining neuronal survival.
- Calpain-mediated cleavage of Src under excitotoxic conditions generates a neurotoxic fragment.
- Both intact Src and its truncated form regulate neuronal survival and death by modulating neuroprotective kinase pathways.
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