BACE2 suppression in mice aggravates the adverse metabolic consequences of an obesogenic diet
Daniela Díaz-Catalán1, Gema Alcarraz-Vizán1, Carlos Castaño1
1Pathogenesis and Prevention of Diabetes Group, Institut d'Investigacions Biomèdiques August Pi i Sunyer (IDIBAPS), Barcelona, Spain; Centro de Investigación Biomédica en Red de Diabetes y Enfermedades Metabólicas Asociadas (CIBERDEM), Spain.
Objective:
Pancreatic β-cell dysfunction is a central feature in the pathogenesis of type 2 diabetes (T2D). Accumulating evidence indicates that β-site APP-cleaving enzyme 2 (BACE2) inhibition exerts a beneficial effect on β-cells in different models of T2D. Thus, targeting BACE2 may represent a potential therapeutic strategy for the treatment of this disease. Here, we aimed to investigate the effects of BACE2 suppression on glucose homeostasis in a model of diet-induced obesity.
Methods:
BACE2 knock-out (BKO) and wild-type (WT) mice were fed with a high-fat diet (HFD) for 2 or 16 weeks. Body weight, food intake, respiratory exchange ratio, locomotor activity, and energy expenditure were determined. Glucose homeostasis was evaluated by glucose and insulin tolerance tests. β-cell proliferation was assessed by Ki67-positive nuclei, and β-cell function was determined by measuring glucose-stimulated insulin secretion. Leptin sensitivity was evaluated by quantifying food intake and body weight after an intraperitoneal leptin injection. Neuropeptide gene expression and insulin signaling in the mediobasal hypothalamus were determined by qPCR and Akt phosphorylation, respectively.
Results:
After 16 weeks of HFD feeding, BKO mice exhibited an exacerbated body weight gain and hyperphagia, in comparison to WT littermates. Glucose tolerance was similar in both groups, whereas HFD-induced hyperinsulinemia, insulin resistance, and β-cell expansion were more pronounced in BKO mice. In turn, leptin-induced food intake inhibition and hypothalamic insulin signaling were impaired in BKO mice, regardless of the diet, in accordance with deregulation of the expression of hypothalamic neuropeptide genes. Importantly, BKO mice already showed increased β-cell proliferation and glucose-stimulated insulin secretion with respect to WT littermates after two weeks of HFD feeding, before the onset of obesity.
Conclusions:
Collectively, these results reveal that BACE2 suppression in an obesogenic setting leads to exacerbated body weight gain, hyperinsulinemia, and insulin resistance. Thus, we conclude that inhibition of BACE2 may aggravate the adverse metabolic effects associated with obesity.
Insights
Inhibition of β-site APP-cleaving enzyme 2 (BACE2) worsens diet-induced obesity, leading to increased body weight gain, hyperinsulinemia, and insulin resistance in mice. This suggests BACE2 inhibition may not be a viable therapeutic strategy for type 2 diabetes.
Area of Science:
- Metabolic disease research
- Endocrinology
- Diabetes pathogenesis
Background:
- Pancreatic beta-cell dysfunction is central to type 2 diabetes (T2D) pathogenesis.
- Beta-site APP-cleaving enzyme 2 (BACE2) inhibition shows promise for T2D treatment.
- Investigating BACE2's role in diet-induced obesity is crucial for therapeutic development.
Purpose of the Study:
- To investigate the effects of BACE2 suppression on glucose homeostasis in a diet-induced obesity model.
- To determine if targeting BACE2 is a viable therapeutic strategy for T2D.
Main Methods:
- Mice lacking BACE2 (BKO) and wild-type (WT) littermates were fed a high-fat diet (HFD) for 2 or 16 weeks.
- Evaluated body weight, food intake, glucose homeostasis, beta-cell function, and hypothalamic insulin signaling.
- Assessed beta-cell proliferation and glucose-stimulated insulin secretion.
Main Results:
- BKO mice showed exacerbated weight gain and hyperphagia after 16 weeks of HFD.
- Insulin resistance and beta-cell expansion were more pronounced in BKO mice.
- BKO mice exhibited increased beta-cell proliferation and insulin secretion early in HFD feeding.
Conclusions:
- BACE2 suppression exacerbates weight gain, hyperinsulinemia, and insulin resistance in an obesogenic setting.
- Inhibition of BACE2 may worsen adverse metabolic effects associated with obesity.
- Targeting BACE2 might not be a beneficial therapeutic strategy for T2D.
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