Autophosphorylation restrains the apoptotic activity of DRP-1 kinase by controlling dimerization and calmodulin
G Shani1, S Henis-Korenblit, G Jona
1Department of Molecular Genetics, Weizmann Institute of Science, Rehovot 76100, Israel.
Abstract:
DRP-1 is a pro-apoptotic Ca2+/calmodulin (CaM)-regulated serine/threonine kinase, recently isolated as a novel member of the DAP-kinase family of proteins. It contains a short extra-catalytic tail required for homodimerization. Here we identify a novel regulatory mechanism that controls its pro-apoptotic functions. It comprises a single autophosphorylation event mapped to Ser308 within the CaM regulatory domain. A negative charge at this site reduces both the binding to CaM and the formation of DRP-1 homodimers. Conversely, the dephosphorylation of Ser308, which takes place in response to activated Fas or tumour necrosis factor-alpha death receptors, increases the formation of DRP-1 dimers, facilitates the binding to CaM and activates the pro-apoptotic effects of the protein. Thus, the process of enzyme activation is controlled by two unlocking steps that must work in concert, i.e. dephosphorylation, which probably weakens the electrostatic interactions between the CaM regulatory domain and the catalytic cleft, and homodimerization. This mechanism of negative autophosphorylation provides a safety barrier that restrains the killing effects of DRP-1, and a target for efficient activation of the kinase by various apoptotic stimuli.
Insights
Death receptor-activated kinase DRP-1
Area of Science:
- Molecular Biology
- Cell Biology
- Biochemistry
Background:
- DRP-1 is a pro-apoptotic serine/threonine kinase in the DAP-kinase family.
- It is regulated by Ca2+/calmodulin (CaM) and requires homodimerization for function.
Purpose of the Study:
- To identify a novel regulatory mechanism controlling DRP-1's pro-apoptotic functions.
- To elucidate the role of autophosphorylation at Ser308 in DRP-1 regulation.
Main Methods:
- Site-directed mutagenesis to alter Ser308 phosphorylation status.
- Analysis of CaM binding and DRP-1 homodimerization.
- Assays to measure DRP-1 kinase activity in response to apoptotic stimuli.
Main Results:
- Autophosphorylation at Ser308 acts as a negative regulatory mechanism.
- Phosphorylation at Ser308 inhibits CaM binding and DRP-1 homodimerization.
- Dephosphorylation of Ser308, induced by Fas or TNF-alpha, activates DRP-1's pro-apoptotic function.
Conclusions:
- DRP-1 activation requires sequential dephosphorylation at Ser308 and homodimerization.
- Negative autophosphorylation provides a safety mechanism to restrain DRP-1 activity.
- This regulatory process is a key target for apoptotic stimuli-induced kinase activation.
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