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Published on: May 24, 2018
Life without Proteinase Activated Receptor 2 (PAR2) Alters Body Composition and Glucose Tolerance in Mice
Thomas H Reynolds1, Stephen J Ives1
1Health and Human Physiological Sciences, Skidmore College, Saratoga Springs, NY 12866, USA.
Abstract:
The potential role of proteinase activated receptor 2 (PAR2) in the development of age-related obesity and insulin resistance is not well-understood. To address the hypothesis that deletion of PAR2 might ameliorate age-related obesity and impaired glucose homeostasis, we assessed body composition and insulin action in 18-month-old male PAR2 knockout (PAR2KO-AG), age-matched (AG) and young C57BL6 (YG, 6-month-old) mice. Body composition was measured by magnetic resonance spectroscopy (MRS) and insulin action was assessed by glucose tolerance (GT), insulin tolerance (IT) and AICAR tolerance (AT) testing. AG mice weighed significantly more than YG mice (p = 0.0001) demonstrating age-related obesity. However, PAR2KO-AG mice weighed significantly more than AG mice (p = 0.042), indicating that PAR2 may prevent a portion of age-related obesity. PAR2KO-AG and AG mice had greater fat mass and body fat percentage than YG mice. Similar to body weight, fat mass was greater in PAR2KO-AG mice compared to AG mice (p = 0.045); however, only a trend for greater body fat percentage in PAR2KO-AG compared to AG mice was observed (p = 0.09). No differences existed in lean body mass among the PAR2KO-AG, AG, and YG mice (p = 0.58). With regard to insulin action, the area under the curve (AUC) for GT was lower in PAR2KO-AG compared to AG mice (p = 0.0003) and YG mice (p = 0.001); however, no differences existed for the AUC for IT or AT. Our findings indicate that age-related obesity is not dependent on PAR2 expression.
Insights
Deleting proteinase-activated receptor 2 (PAR2) did not prevent age-related obesity. However, PAR2 knockout mice showed increased body weight and fat mass compared to controls, suggesting PAR2 may influence obesity development.
Area of Science:
- Metabolic Research
- Obesity Studies
- Aging Research
Background:
- Proteinase-activated receptor 2 (PAR2) role in age-related obesity and insulin resistance is unclear.
- Investigating PAR2's influence on metabolic changes during aging.
Purpose of the Study:
- To test if deleting PAR2 ameliorates age-related obesity and impaired glucose homeostasis.
- To assess the impact of PAR2 deficiency on body composition and insulin sensitivity in aging mice.
Main Methods:
- Comparison of 18-month-old PAR2 knockout (PAR2KO-AG) mice with age-matched (AG) and young (YG) C57BL6 mice.
- Body composition analysis using magnetic resonance spectroscopy (MRS).
- Insulin action assessment via glucose tolerance (GT), insulin tolerance (IT), and AICAR tolerance (AT) tests.
Main Results:
- AG mice exhibited age-related obesity compared to YG mice.
- PAR2KO-AG mice showed increased body weight and fat mass compared to AG mice, suggesting PAR2 may limit obesity.
- No significant differences in lean body mass were observed across groups.
- PAR2KO-AG mice demonstrated improved glucose tolerance compared to AG and YG mice, but no changes in insulin or AICAR tolerance.
Conclusions:
- Age-related obesity is not solely dependent on PAR2 expression.
- PAR2 appears to play a role in modulating body weight and fat accumulation during aging.
- PAR2 deficiency may improve glucose tolerance in aged mice, independent of overall insulin sensitivity.

