Obesity Human Soluble Prorenin Receptor Expressed in Adipose Tissue Improves Insulin Sensitivity and Endothelial

Gertrude Arthur1, Nermin Ahmed1, Kellea Nichols1

  • 1Department of Pharmacology and Nutritional Sciences.

Insights

Adipose tissue-derived soluble prorenin receptor (sPRR) improved metabolic and vascular function in obese female mice, but not males. This suggests other tissues, not fat, may produce the sPRR linked to metabolic disease.

Area of Science:

  • Endocrinology
  • Metabolic Disease Research
  • Cardiovascular Physiology

Background:

  • Soluble prorenin receptor (sPRR) is a plasma biomarker for metabolic disease.
  • The specific tissue source of sPRR influencing metabolic function is not well understood.

Purpose of the Study:

  • To investigate the role of adipose tissue-derived human sPRR (HsPRR) in metabolic and cardiovascular function.
  • To compare effects in lean and obese male and female mice.

Main Methods:

  • Generated adipose tissue-specific human sPRR (Adi-HsPRR) transgenic mice.
  • Fed mice low-fat or high-fat diets for 20 weeks.
  • Assessed metabolic parameters, insulin sensitivity, endothelial function, and gene expression.

Main Results:

  • Obese Adi-HsPRR mice had elevated adipose tissue sPRR but similar adiposity and adipocyte size compared to controls.
  • Adi-HsPRR expression improved insulin sensitivity and endothelial function in obese female mice.
  • Effects on metabolic and cardiovascular function were absent in obese male mice.

Conclusions:

  • Adipose tissue-derived HsPRR can improve metabolic and vascular health in obese females, independent of circulating sPRR levels.
  • The findings suggest that elevated plasma sPRR in metabolic disease may originate from non-adipose tissues.
  • Sex-specific responses highlight the complexity of sPRR in metabolic regulation.