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Updated: Sep 26, 2026

Isolated Pancreatic Islet Treatment and Apoptosis Measurement
Published on: May 2, 2025
Cytokine-mediated down-regulation of the transcription factor cAMP-response element-binding protein in pancreatic
Purevsuren Jambal1, Sara Masterson, Albina Nesterova
1Department of Medicine, University of Colorado Health Sciences Center, Denver, Colorado 80262, USA.
Abstract:
Cytokines are known to induce apoptosis of pancreatic beta-cells. Impaired expression of the anti-apoptotic gene bcl-2 is one of the mechanisms involved. In this study, we identified a defect involving transcription factor cAMP-response element-binding protein (CREB) in the expression of bcl-2. Exposure of mouse pancreatic beta-cell line, MIN6 cells, to cytokines (interleukin-1beta, tumor necrosis factor-alpha, and interferon-gamma) led to a significant (p < 0.01) decrease in Bcl-2 protein and mRNA levels. Cytokines decreased (56%) the activity of the bcl-2 promoter that contains a cAMP-response element (CRE) site. Similar decreases were seen with a luciferase reporter gene driven by tandem repeats of CRE and a CREB-specific Gal4-luciferase reporter, suggesting a defect at the level of CREB. The active phospho form (serine 133) of CREB diminished significantly (p < 0.01) in cells exposed to cytokines. Examination of signaling pathways upstream of CREB revealed a reduction in the active form of Akt. Cytokine-induced decrease of bcl-2 promoter activity was partially restored when cells were cotransfected with a constitutively active form of Akt. Several end points of cytokine action including decreases in phospho-CREB, phospho-Akt, and BCl-2 levels and activation of caspase-9 were observed in isolated mouse islets. Overexpression of wild-type CREB in MIN6 cells by plasmid transfection and adenoviral infection led to protection against cytokine-induced apoptosis. Adenoviral transfer of dominant-negative forms of CREB, on the other hand, resulted in activation of caspase-9 and exaggeration of cytokine-induced beta-cell apoptosis. Together, these results point to CREB as a novel target for strategies aimed at improving the survival of beta-cells.
Insights
Cytokines induce pancreatic beta-cell apoptosis by impairing the anti-apoptotic gene bcl-2. This study identifies a defect in cAMP-response element-binding protein (CREB) as a key mechanism, highlighting CREB as a potential therapeutic target for beta-cell survival.
Area of Science:
- * Molecular Biology
- * Cell Biology
- * Endocrinology
Background:
- * Cytokines are known inducers of pancreatic beta-cell apoptosis.
- * Impaired expression of the anti-apoptotic gene BCL-2 is a contributing factor.
- * The precise molecular mechanisms underlying cytokine-induced beta-cell death require further elucidation.
Purpose of the Study:
- * To investigate the role of cAMP-response element-binding protein (CREB) in cytokine-induced apoptosis of pancreatic beta-cells.
- * To identify molecular defects in BCL-2 gene expression regulation.
- * To explore potential therapeutic targets for enhancing beta-cell survival.
Main Methods:
- * Utilized MIN6 mouse pancreatic beta-cell line and isolated mouse islets.
- * Assessed BCL-2 protein and mRNA levels, promoter activity, and CREB phosphorylation.
- * Employed luciferase reporter assays, Western blotting, and adenoviral gene transfer.
Main Results:
- * Cytokines significantly decreased BCL-2 levels and bcl-2 promoter activity in MIN6 cells.
- * Cytokine exposure led to reduced phospho-CREB and phospho-Akt levels, indicating pathway defects.
- * Overexpression of CREB protected beta-cells from apoptosis, while dominant-negative CREB exacerbated it.
Conclusions:
- * CREB plays a critical role in regulating BCL-2 expression and protecting pancreatic beta-cells from cytokine-induced apoptosis.
- * A defect in CREB signaling is a key mechanism underlying beta-cell apoptosis.
- * Targeting CREB represents a promising strategy for improving beta-cell survival in conditions like type 1 diabetes.
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