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September 26, 2025GeroScience3 citationsOpen Access

Glucagon receptor signaling is indispensable for the healthspan effects of caloric restriction in aging male mice

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KBKassandra R. BrunerIBIsabella R. ByingtonTMTyler Marx

Key Points

  • Eliminating glucagon receptor signaling decreases median lifespan by 35% in lean mice, highlighting its importance.
  • Chronic caloric restriction improves metabolic health in wild-type mice, while those lacking glucagon signaling do not show these benefits.
  • Liver-specific deletion of glucagon receptor disrupts critical nutrient-sensing pathways linked to aging.
  • Caloric restriction reduced hepatic mTOR activity in wild-type mice but not in those without glucagon receptor signaling.

Abstract

Abstract Obesity and type 2 diabetes mellitus accelerate aging, shortening the duration of healthspan. Conversely, chronic calorie restriction (CR) extends healthspan. Research aimed at understanding the mechanism by which CR slows aging has focused heavily on insulin and downstream signaling cascades. Glucagon, a hormone that counter-regulates insulin, is commonly affected by these same interventions. To investigate the role of glucagon in aging, we used dietary manipulation, global and liver-specific glucagon receptor knockout, and pharmacological glucagon receptor activation. We found that globally eliminating glucagon receptor signaling (Gcgr KO) decreases median lifespan by 35% in lean mice. Extending these findings to metabolic health, we found that glucagon receptor signaling is indispensable to the metabolic response to chronic CR in young and aged mice. While CR decreased liver fat, serum triglyceride, and serum cholesterol in WT mice, these metabolic benefits were absent in Gcgr KO mice. In line with these observations, we found that critical nutrient-sensing pathways known to improve aging are dysregulated in mice lacking glucagon receptor signaling at the liver (Gcgr hep−/− ). Liver-specific deletion of the glucagon receptor decreases hepatic AMP kinase activation in aging mice, regardless of diet. Further, CR decreases hepatic mTOR activity in WT mice but not in Gcgr hep−/− mice. Together, these findings propose that glucagon signaling plays a critical role in both normal aging and the lifespan and healthspan extension driven by caloric restriction. Graphical Abstract

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Cite This Study

Bruner et al. (2025) studied this question.

synapsesocial.com/papers/68d6cd68b1249cec298b3b42https://doi.org/10.1007/s11357-025-01899-w
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