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Published on: May 6, 2013
Acceleration of autoimmune diabetes in Rheb-congenic NOD mice with β-cell-specific mTORC1 activation
Hirotomo Sasaki1, Hisafumi Yasuda, Hiroaki Moriyama
1Department of Internal and Geriatric Medicine, Kobe University Graduate School of Medicine, Kobe, Japan.
Abstract:
The protein Ras homolog enriched in brain (Rheb) is a Ras-like small GTPase that activates the mechanistic target of rapamycin complex 1 (mTORC1), which promotes cell growth. We previously generated transgenic C57BL/6 mice overexpressing Rheb in β-cells (B6(Rheb)), which exhibited increased β-cell size and improved glucose tolerance with higher insulin secretion than wild type C57BL/6 mice. The mice also showed resistance to obesity-induced hyperglycemia, a model of type 2 diabetes, and to multiple low-dose-streptozotocin (MLDS)-induced hyperglycemia, a model of type 1 diabetes (T1D). To investigate whether the effects of mTORC1 activation by Rheb in B6(Rheb) mice would also be evident in NOD mice, a spontaneous autoimmune T1D model, we created two NOD mouse lines overexpressing Rheb in their β-cells (NOD(Rheb); R3 and R20). We verified Rheb overexpression in β-cells, the relative activation of mTORC1 and β-cell enlargement. By 35 weeks of age, diabetes incidence was significantly greater in the R3 line and tended to be greater in the R20 line than in NOD mice. Histological analysis demonstrated that insulitis was significantly accelerated in 12-week-old R3 NOD(Rheb) mice compared with NOD mice. Furthermore, serum insulin autoantibody (IAA) expression was significantly higher than that of NOD mice. We also examined whether complete Freund's adjuvant (CFA) treatment alone or with glucagon-like peptide-1 (GLP-1) analog would reverse the hyperglycemia of NOD(Rheb) mice; unexpectedly, almost none achieved normoglycemia. In summary, diabetes progression was significantly accelerated rather than prevented in NOD(Rheb) mice. Our results suggest that the β-cell enlargement might merely enhance the autoimmunity of pathogenic T-cells against islets, leading to acceleration of autoimmune diabetes. We conclude that not only enlargement but also regeneration of β-cells in addition to the prevention of β-cell destruction will be required for the ideal therapy of autoimmune T1D.
Insights
Overexpressing Rheb protein in pancreatic beta cells accelerated autoimmune diabetes in NOD mice, contrary to expectations. Beta cell enlargement may worsen autoimmunity, highlighting the need for regeneration and protection against destruction for effective type 1 diabetes therapy.
Area of Science:
- Endocrinology and Metabolism
- Immunology
- Cell Biology
Background:
- Ras homolog enriched in brain (Rheb) activates mTORC1, promoting cell growth.
- Previous studies showed Rheb overexpression in C57BL/6 mice led to larger beta cells, improved glucose tolerance, and resistance to diabetes models.
- NOD mice are a model for spontaneous autoimmune type 1 diabetes (T1D).
Purpose of the Study:
- To investigate the effect of Rheb-induced mTORC1 activation and beta cell enlargement in NOD mice, a model of autoimmune T1D.
- To determine if Rheb overexpression could prevent or exacerbate autoimmune diabetes in the NOD background.
Main Methods:
- Generated two NOD mouse lines (R3 and R20) overexpressing Rheb in beta cells.
- Verified Rheb overexpression, mTORC1 activation, and beta cell size.
- Assessed diabetes incidence, insulitis, insulin autoantibody (IAA) levels, and response to CFA/GLP-1 analog treatment.
Main Results:
- NOD(Rheb) mice showed significantly accelerated diabetes incidence compared to control NOD mice.
- Histological analysis revealed accelerated insulitis and increased IAA levels in NOD(Rheb) mice.
- Treatment with CFA or GLP-1 analog did not restore normoglycemia in NOD(Rheb) mice.
Conclusions:
- Beta cell enlargement driven by Rheb overexpression exacerbates autoimmune diabetes in NOD mice.
- The findings suggest that beta cell enlargement may enhance islet autoimmunity.
- Effective therapy for autoimmune T1D requires not only beta cell regeneration and enlargement but also protection against autoimmune destruction.
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