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Published on: November 5, 2016
SMAD7 enhances adult β-cell proliferation without significantly affecting β-cell function in mice
Anuradha Sehrawat1, Chiyo Shiota1, Nada Mohamed1
1Department of Pediatric Surgery, Children's Hospital of University of Pittsburgh, Pittsburgh, Pennsylvania 15224.
Abstract:
The interplay between the transforming growth factor β (TGF-β) signaling proteins, SMAD family member 2 (SMAD2) and 3 (SMAD3), and the TGF-β-inhibiting SMAD, SMAD7, seems to play a vital role in proper pancreatic endocrine development and also in normal β-cell function in adult pancreatic islets. Here, we generated conditional SMAD7 knockout mice by crossing insulin1Cre mice with SMAD7fx/fx mice. We also created a β cell-specific SMAD7-overexpressing mouse line by crossing insulin1Dre mice with HPRT-SMAD7/RosaGFP mice. We analyzed β-cell function in adult islets when SMAD7 was either absent or overexpressed in β cells. Loss of SMAD7 in β cells inhibited proliferation, and SMAD7 overexpression enhanced cell proliferation. However, alterations in basic glucose homeostasis were not detectable following either SMAD7 deletion or overexpression in β cells. Our results show that both the absence and overexpression of SMAD7 affect TGF-β signaling and modulates β-cell proliferation but does not appear to alter β-cell function. Reversible SMAD7 overexpression may represent an attractive therapeutic option to enhance β-cell proliferation without negative effects on β-cell function.
Insights
Transforming growth factor β (TGF-β) signaling protein SMAD7 is crucial for pancreatic beta cell proliferation. Manipulating SMAD7 levels impacts beta cell growth but not overall glucose homeostasis, suggesting therapeutic potential.
Area of Science:
- Endocrinology
- Molecular Biology
- Developmental Biology
Background:
- Transforming growth factor β (TGF-β) signaling, involving SMAD2/3 and SMAD7, is vital for pancreatic endocrine development and beta cell function.
- SMAD7 acts as a TGF-β inhibitor, modulating cellular responses.
Purpose of the Study:
- To investigate the role of SMAD7 in pancreatic beta cell proliferation and function.
- To determine the effects of SMAD7 absence and overexpression in beta cells.
Main Methods:
- Generated conditional SMAD7 knockout mice using insulin1Cre and SMAD7fx/fx mice.
- Created SMAD7-overexpressing mouse lines via insulin1Dre and HPRT-SMAD7/RosaGFP mice.
- Analyzed beta cell proliferation and glucose homeostasis in adult islets.
Main Results:
- Loss of SMAD7 in beta cells inhibited proliferation.
- SMAD7 overexpression enhanced beta cell proliferation.
- No detectable alterations in basic glucose homeostasis were observed.
Conclusions:
- SMAD7 modulates TGF-β signaling and beta cell proliferation.
- Altering SMAD7 levels affects beta cell growth without impacting overall function.
- Reversible SMAD7 overexpression presents a potential therapeutic strategy for enhancing beta cell proliferation.

