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Updated: Dec 27, 2025

Modeling and Evaluation of Murine Diabetic Cardiomyopathy Model
Published on: November 29, 2024
MG53 Does Not Manifest the Development of Diabetes in db/db Mice
Qiang Wang1, Zehua Bian1, Qiwei Jiang1
1Department of Surgery, The Ohio State University Wexner Medical Center, Columbus, OH.
Abstract:
MG53 is a member of the TRIM protein family that is predominantly expressed in striated muscles and participates in cell membrane repair. Controversy exists regarding MG53's role in insulin signaling and manifestation of diabetes. We generated db/db mice with either whole-body ablation or sustained elevation of MG53 in the bloodstream in order to evaluate the physiological function of MG53 in diabetes. To quantify the amount of MG53 protein in circulation, we developed a monoclonal antibody against MG53 with high specificity. Western blot using this antibody revealed lower or no change of serum MG53 levels in db/db mice or patients with diabetes compared with control subjects. Neither whole-body ablation of MG53 nor sustained elevation of MG53 in circulation altered insulin signaling and glucose handling in db/db mice. Instead, mice with ablation of MG53 were more susceptible to streptozotocin-induced dysfunctional handling of glucose compared with the wild-type littermates. Alkaline-induced corneal injury demonstrated delayed healing in db/db mice, which was restored by topical administration of recombinant human (rh)MG53. Daily intravenous administration of rhMG53 in rats at concentrations up to 10 mg/kg did not produce adverse effects on glucose handling. These findings challenge the hypothetical function of MG53 as a causative factor for the development of diabetes. Our data suggest that rhMG53 is a potentially safe and effective biologic to treat diabetic oculopathy in rodents.
Insights
MG53 protein does not cause diabetes. Instead, MG53 deficiency worsens glucose handling, but recombinant human MG53 shows potential for treating diabetic eye conditions.
Area of Science:
- Biochemistry
- Molecular Biology
- Endocrinology
Background:
- MG53, a TRIM family protein, is primarily in striated muscles and aids cell membrane repair.
- Its role in insulin signaling and diabetes development is debated.
Purpose of the Study:
- To investigate the physiological function of MG53 in diabetes.
- To determine if MG53 influences insulin signaling and glucose metabolism.
Main Methods:
- Generated db/db mice with whole-body MG53 ablation or sustained elevated circulating MG53.
- Developed a specific monoclonal antibody for quantifying serum MG53.
- Assessed insulin signaling, glucose handling, and corneal wound healing.
Main Results:
- Serum MG53 levels showed no significant change in diabetic mice or patients.
- MG53 ablation or elevation did not affect insulin signaling or glucose handling in db/db mice.
- MG53-ablated mice exhibited impaired glucose handling and delayed corneal healing, which rhMG53 improved.
Conclusions:
- Findings challenge MG53's role as a causative factor in diabetes development.
- Data suggest MG53 deficiency impairs glucose homeostasis and wound healing.
- Recombinant human MG53 (rhMG53) is a potentially safe and effective treatment for diabetic oculopathy.
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