Loss of CTRP5 improves insulin action and hepatic steatosis

Xia Lei1, Susana Rodriguez1, Pia S Petersen1

  • 1Department of Physiology, Johns Hopkins University School of Medicine, Baltimore, Maryland; Center for Metabolism and Obesity Research, Johns Hopkins University School of Medicine, Baltimore, Maryland.

Insights

C1q/TNF-related protein 5 (CTRP5) negatively regulates glucose metabolism and insulin sensitivity. Inhibiting CTRP5 may alleviate obesity- and diabetes-related insulin resistance.

Area of Science:

  • Metabolic research
  • Endocrinology
  • Molecular biology

Background:

  • C1q/TNF-related protein 5 (CTRP5) is a secreted protein linked to retinal degeneration.
  • CTRP5's role in peripheral tissues is largely unknown.
  • Adipose CTRP5 expression increases with obesity and diabetes in humans and rodents.

Purpose of the Study:

  • To investigate the physiological role of CTRP5 in peripheral tissues.
  • To determine CTRP5's function in glucose metabolism and insulin sensitivity.
  • To assess CTRP5's potential as a therapeutic target for metabolic diseases.

Main Methods:

  • Studied Ctrp5 expression in mice under various dietary conditions (fasting, refeeding, high-fat diet).
  • Utilized a genetic loss-of-function mouse model (CTRP5-deficient).
  • Examined insulin action and hepatic steatosis in CTRP5-deficient mice.
  • Investigated CTRP5 effects on insulin signaling in cultured adipocytes and myotubes.

Main Results:

  • CTRP5 expression is diet- and fasting-responsive.
  • CTRP5-deficient mice showed attenuated hepatic steatosis and improved insulin action on a high-fat diet.
  • Loss of CTRP5 improved insulin sensitivity in aged mice.
  • Recombinant CTRP5 inhibited insulin-stimulated Akt phosphorylation in vitro.

Conclusions:

  • CTRP5 acts as a negative regulator of glucose metabolism and insulin sensitivity.
  • CTRP5 deficiency improves metabolic parameters, particularly under high-fat conditions.
  • Targeting CTRP5 may offer a novel therapeutic strategy for insulin resistance in obesity and diabetes.

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