Abstract

ObjectiveBrown and white adipose tissue exerts pleiotropic effects on systemic energy metabolism in part by releasing endocrine factors. Neuregulin 4 (Nrg4) was recently identified as a brown fat-enriched secreted factor that ameliorates diet-induced metabolic disorders, including insulin resistance and hepatic steatosis. However, the physiological mechanisms through which Nrg4 regulates energy balance and glucose and lipid metabolism remain incompletely understood. The aims of the current study were: i) to investigate the regulation of adipose Nrg4 expression during obesity and the physiological signals involved, ii) to elucidate the mechanisms underlying Nrg4 regulation of energy balance and glucose and lipid metabolism, and iii) to explore whether Nrg4 regulates adipose tissue secretome gene expression and adipokine secretion. MethodsWe examined the correlation of adipose Nrg4 expression with obesity in a cohort of diet-induced obese mice and investigated the upstream signals that regulate Nrg4 expression. We performed metabolic cage and hyperinsulinemic-euglycemic clamp studies in Nrg4 transgenic mice to dissect the metabolic pathways regulated by Nrg4. We investigated how Nrg4 regulates hepatic lipid metabolism in the fasting state and explored the effects of Nrg4 on adipose tissue gene expression, particularly those encoding secreted factors. ResultsAdipose Nrg4 expression is inversely correlated with adiposity and regulated by pro-inflammatory and anti-inflammatory signaling. Transgenic expression of Nrg4 increases energy expenditure and augments whole body glucose metabolism. Nrg4 protects mice from diet-induced hepatic steatosis in part through activation of hepatic fatty acid oxidation and ketogenesis. Finally, Nrg4 promotes a healthy adipokine profile during obesity. ConclusionsNrg4 exerts pleiotropic beneficial effects on energy balance and glucose and lipid metabolism to ameliorate obesity-associated metabolic disorders. Biologic therapeutics based on Nrg4 may improve both type 2 diabetes and non-alcoholic fatty liver disease (NAFLD) in patients.

Highlights

  • Adipose tissue is central to systemic energy balance and metabolic homeostasis

  • Biologic therapeutics based on Neuregulin 4 (Nrg4) may improve both type 2 diabetes and non-alcoholic fatty liver disease (NAFLD) in patients

  • Regulation of adipose Nrg4 expression in obesity Nrg4 was identified as a brown fat-enriched endocrine factor that improves obesity-associated insulin resistance and hepatic steatosis [13]

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Summary

Methods

We examined the correlation of adipose Nrg expression with obesity in a cohort of diet-induced obese mice and investigated the upstream signals that regulate Nrg expression. We performed metabolic cage and hyperinsulinemic-euglycemic clamp studies in Nrg transgenic mice to dissect the metabolic pathways regulated by Nrg. We investigated how Nrg regulates hepatic lipid metabolism in the fasting state and explored the effects of Nrg on adipose tissue gene expression, those encoding secreted factors

Results
Conclusions
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MATERIALS AND METHODS
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