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Published on: August 27, 2013
Induction of bcl-2 expression by phosphorylated CREB proteins during B-cell activation and rescue from apoptosis
B E Wilson1, E Mochon, L M Boxer
1Center for Molecular Biology in Medicine, Palo Alto Veterans Affairs Medical Center, California, USA.
Insights
Engagement of B cell surface immunoglobulin increases bcl-2 expression, crucial for cell survival. A cyclic AMP-responsive element (CRE) in the bcl-2 promoter binds CREB, mediating this survival signal via protein kinase C.
Area of Science:
- Molecular Biology
- Immunology
- Cell Biology
Background:
- B cell activation via surface immunoglobulin engagement promotes survival and proliferation.
- Bcl-2 expression is upregulated upon B cell activation.
- Understanding the regulatory mechanisms of bcl-2 is critical for B cell function and survival.
Purpose of the Study:
- To identify and characterize the regulatory elements controlling bcl-2 gene expression in B cells.
- To elucidate the signaling pathways involved in bcl-2 induction.
- To investigate the role of the cyclic AMP-responsive element (CRE) in bcl-2 regulation.
Main Methods:
- Analysis of the 5'-flanking region of the bcl-2 gene to identify regulatory elements.
- Electrophoretic mobility shift assays (EMSA) and antibody supershift experiments to identify DNA-binding proteins.
- UV cross-linking and denaturing polyacrylamide gel electrophoresis to confirm protein-DNA interactions.
- Transient transfection assays with mutated bcl-2 promoter constructs.
- Treatment of B cell lines with specific stimuli (anti-immunoglobulin M, phorbol esters) and analysis of bcl-2 expression and CREB phosphorylation.
Main Results:
- A major positive regulatory region for bcl-2 expression was identified in the 5'-flanking region.
- This region contains a CRE site that binds CREB and ATF family members.
- Mutating the CRE site abolished bcl-2 promoter activity and CREB binding.
- Stimulation of B cells with anti-immunoglobulin M or phorbol esters increased bcl-2 expression via the CRE site.
- Phorbol ester treatment rescued immature B cells from apoptosis and increased bcl-2 expression dependent on the CRE site.
- CREB phosphorylation at serine 133, mediated by protein kinase C, was observed upon stimulation.
- Optimal bcl-2 induction required both the CRE site and an upstream regulatory element.
Conclusions:
- The CRE site in the bcl-2 promoter plays a crucial role in inducing bcl-2 expression during mature B cell activation and immature B cell rescue from apoptosis.
- Bcl-2 regulation is linked to signal transduction pathways involving CREB phosphorylation mediated by protein kinase C.
- The findings suggest a conserved mechanism for bcl-2 induction in other cell types, particularly those involving protein kinase C.
Abstract:
Engagement of surface immunoglobulin on mature B cells leads to rescue from apoptosis and to proliferation. Levels of bcl-2 mRNA and protein increase with cross-linking of surface immunoglobulin. We have located the major positive regulatory region for control of bcl-2 expression in B cells in the 5'-flanking region. The positive region can be divided into an upstream and a downstream regulatory region. The downstream regulatory region contains a cyclic AMP-responsive element (CRE). We show by antibody supershift experiments and UV cross-linking followed by denaturing polyacrylamide gel electrophoresis that both CREB and ATF family members bind to this region in vitro. Mutations of the CRE site that result in loss of CREB binding also lead to loss of functional activity of the bcl-2 promoter in transient-transfection assays. The presence of an active CRE site in the bcl-2 promoter implies that the regulation of bcl-2 expression is linked to a signal transduction pathway in B cells. Treatment of the mature B-cell line BAL-17 with either anti-immunoglobulin M or phorbol 12-myristate 13-acetate leads to an increase in bcl-2 expression that is mediated by the CRE site. Treatment of the more immature B-cell line, Ramos, with phorbol esters rescues the cells from calcium-dependent apoptosis. bcl-2 expression is increased following phorbol ester treatment, and the increased expression is dependent on the CRE site. These stimuli result in phosphorylation of CREB at serine 133. The phosphorylation of CREB that results in activation is mediated by protein kinase C rather than by protein kinase A. Although the CRE site is necessary, optimal induction of bcl-2 expression requires participation of the upstream regulatory element, suggesting that phosphorylation of CREB alters its interaction with the upstream regulatory element. The CRE site in the bcl-2 promoter appears to play a major role in the induction of bcl-2 expression during the activation of mature B cells and during the rescue of immature B cells from apoptosis. It is possible that the CRE site is responsible for induction of bcl-2 expression in other cell types, particularly those in which protein kinase C is involved.
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