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Assessment of Mitochondrial Functions and Cell Viability in Renal Cells Overexpressing Protein Kinase C Isozymes
Published on: January 7, 2013
Overexpression of CREB protein protects from tunicamycin-induced apoptosis in various rat cell types
András Balogh1, Mária Németh, Ibolya Koloszár
1Department of Medical Biology, University of Pécs Medical School, Szigeti 12, Pecs, 7624, Hungary.
Abstract:
Endoplasmic reticulum (ER) stress plays an essential role in unfolded protein response induced apoptosis contributing to several pathological conditions. Glycogen synthase kinase-3β (GSK-3β) plays a central role in several apoptotic signaling, including ER stress, as the active form of GSK-3β induces apoptosis. The phosphorylation of cAMP responsive element (CRE) binding protein (CREB) Ser-133 (S133) residue is the end-point of various signaling pathways, like growth factor signaling, while the Ser-129 (S129) residue is phosphorylated by GSK-3β. The significance of the ubiquitously expressed transcription factor CREB is demonstrated in prolonged, tunicamycin (TM)-induced ER stress in this study. In the experiments wild-type (wt) CREB, S129Ala, S133Ala or S129Ala-S133Ala mutant CREB expressing PC12 rat pheochromocytoma cell lines showed increased survival under TM-evoked prolonged ER stress compared to wtPC12 cells. After TM treatment ER stress was activated in all PC12 cell types. Lithium and SB-216763, the selective, well-known inhibitors of GSK-3β, decreased TM-induced apoptosis and promoted cell survival. The proapoptotic BH3-only Bcl-2 family member Bcl-2-interacting mediator of cell death (Bim) level was decreased in the different CREB overexpressing PC12 cells as a result of TM treatment. CREB overexpression also inhibited the sequestration of Bim protein from tubulin molecules, as it was demonstrated in wtPC12 cells. Transient expression of wtCREB diminished TM-induced apoptosis in wtPC12, Rat-1 and primary rat vascular smooth muscle cells. These findings demonstrate a novel role of CREB in different cell types as a potent protector against ER stress.
Insights
The cAMP responsive element (CRE) binding protein (CREB) protects cells against endoplasmic reticulum (ER) stress-induced apoptosis. Overexpressing CREB enhances cell survival during prolonged ER stress, revealing a novel protective role.
Area of Science:
- Cellular Biology
- Molecular Biology
- Biochemistry
Background:
- Endoplasmic reticulum (ER) stress is implicated in apoptosis and various pathologies.
- Glycogen synthase kinase-3β (GSK-3β) signaling contributes to ER stress-induced apoptosis.
- The cAMP responsive element (CRE) binding protein (CREB) is a key transcription factor involved in cellular signaling pathways.
Purpose of the Study:
- To investigate the role of CREB in prolonged tunicamycin (TM)-induced ER stress.
- To determine if CREB modulates apoptosis mediated by ER stress.
- To explore the protective mechanisms of CREB against ER stress.
Main Methods:
- Utilized PC12 rat pheochromocytoma cell lines expressing wild-type (wt) or mutant CREB (S129Ala, S133Ala, S129Ala-S133Ala).
- Induced prolonged ER stress using tunicamycin (TM).
- Administered GSK-3β inhibitors (Lithium, SB-216763) and assessed apoptosis and cell survival.
- Measured levels of Bcl-2-interacting mediator of cell death (Bim) and its interaction with tubulin.
Main Results:
- CREB overexpression, particularly mutants, increased cell survival under TM-induced ER stress.
- GSK-3β inhibition reduced TM-induced apoptosis and promoted cell survival.
- CREB overexpression decreased the proapoptotic Bim protein levels and inhibited its sequestration by tubulin.
- Transient expression of wtCREB reduced apoptosis in multiple cell types (PC12, Rat-1, primary vascular smooth muscle cells).
Conclusions:
- CREB acts as a novel protective factor against ER stress-induced apoptosis.
- CREB modulates the levels and interactions of the proapoptotic protein Bim.
- Targeting CREB signaling may offer therapeutic strategies for conditions involving ER stress.
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