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Updated: May 14, 2026

A High-content In Vitro Pancreatic Islet β-cell Replication Discovery Platform
Published on: July 16, 2016
Glucocorticoid-induced suppression of β-cell proliferation is mediated by Mig6
E Scott Colvin1, Hong-Yun Ma, Yi-Chun Chen
1Department of Pediatrics and Herman B. Wells Center for Pediatric Research, Indiana University School of Medicine, Indianapolis, IN 46202, USA.
Abstract:
Glucocorticoids can cause steroid-induced diabetes or accelerate the progression to diabetes by creating systemic insulin resistance and decreasing functional β-cell mass, which is influenced by changes in β-cell function, growth, and death. The synthetic glucocorticoid agonist dexamethasone (Dex) is deleterious to functional β-cell mass by decreasing β-cell function, survival, and proliferation. However, the mechanism by which Dex decreases β-cell proliferation is unknown. Interestingly, Dex induces the transcription of an antiproliferative factor and negative regulator of epidermal growth factor receptor signaling, Mig6 (also known as gene 33, RALT, and Errfi1). We, therefore, hypothesized that Dex impairs β-cell proliferation by increasing the expression of Mig6 and thereby decreasing downstream signaling of epidermal growth factor receptor. We found that Dex induced Mig6 and decreased [(3)H]thymidine incorporation, an index of cellular replication, in mouse, rat, and human islets. Using adenovirally delivered small interfering RNA targeted to Mig6 in rat islets, we were able to limit the induction of Mig6 upon exposure to Dex, compared with islets treated with a control virus, and completely rescued the Dex-mediated impairment in replication. We demonstrated that both Dex and overexpression of Mig6 attenuated the phosphorylation of ERK1/2 and blocked the G(1)/S transition of the cell cycle. In conclusion, Mig6 functions as a molecular brake for β-cell proliferation during glucocorticoid treatment in β-cells, and thus, Mig6 may be a novel target for preventing glucocorticoid-induced impairments in functional β-cell mass.
Insights
Glucocorticoids like dexamethasone reduce pancreatic beta-cell proliferation by increasing Mig6. Inhibiting Mig6 restores beta-cell replication, suggesting Mig6 as a target for steroid-induced diabetes.
Area of Science:
- Endocrinology
- Molecular Biology
- Diabetes Research
Background:
- Glucocorticoids can induce or worsen diabetes by impairing pancreatic beta-cell function and mass.
- Dexamethasone (Dex) negatively impacts beta-cell proliferation, but the underlying mechanism is unclear.
- Dex induces Mig6, a negative regulator of epidermal growth factor receptor (EGFR) signaling.
Purpose of the Study:
- To investigate if dexamethasone impairs beta-cell proliferation by upregulating Mig6 and inhibiting EGFR signaling.
- To determine if Mig6 acts as a mediator of dexamethasone's effects on beta-cell replication.
Main Methods:
- Treated mouse, rat, and human islets with dexamethasone and measured Mig6 expression and [3H]thymidine incorporation.
- Utilized adenoviral delivery of small interfering RNA (siRNA) targeting Mig6 in rat islets to block Dex-induced Mig6 expression.
- Assessed ERK1/2 phosphorylation and cell cycle progression (G1/S transition) following Dex treatment and Mig6 overexpression.
Main Results:
- Dexamethasone increased Mig6 expression and reduced beta-cell replication across species.
- Silencing Mig6 in rat islets prevented the dexamethasone-induced decrease in replication.
- Both dexamethasone and Mig6 overexpression inhibited ERK1/2 phosphorylation and blocked cell cycle progression.
Conclusions:
- Mig6 acts as a molecular brake on beta-cell proliferation during glucocorticoid exposure.
- Upregulation of Mig6 mediates the inhibitory effects of dexamethasone on beta-cell replication.
- Mig6 represents a potential therapeutic target to preserve beta-cell mass during glucocorticoid therapy.
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