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Published on: January 4, 2018
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.
Abstract:
The gene that encodes C1q/TNF-related protein 5 (CTRP5), a secreted protein of the C1q family, is mutated in individuals with late-onset retinal degeneration. CTRP5 is widely expressed outside the eye and also circulates in plasma. Its physiological role in peripheral tissues, however, has yet to be elucidated. Here, we show that Ctrp5 expression is modulated by fasting and refeeding, and by different diets, in mice. Adipose expression of CTRP5 was markedly upregulated in obese and diabetic humans and in genetic and dietary models of obesity in rodents. Furthermore, human CTRP5 expression in the subcutaneous fat depot positively correlated with BMI. A genetic loss-of-function mouse model was used to address the metabolic function of CTRP5 in vivo. On a standard chow diet, CTRP5-deficient mice had reduced fasting insulin but were otherwise comparable with wild-type littermate controls in body weight and adiposity. However, when fed a high-fat diet, CTRP5-deficient animals had attenuated hepatic steatosis and improved insulin action. Loss of CTRP5 also improved the capacity of chow-fed aged mice to respond to subsequent high-fat feeding, as evidenced by decreased insulin resistance. In cultured adipocytes and myotubes, recombinant CTRP5 treatment attenuated insulin-stimulated Akt phosphorylation. Our results provide the first genetic and physiological evidence for CTRP5 as a negative regulator of glucose metabolism and insulin sensitivity. Inhibition of CTRP5 action may result in the alleviation of insulin resistance associated with obesity and diabetes.
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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