Female Nur77-Deficient Mice Show Increased Susceptibility to Diet-Induced Obesity
PLOS ONE
Authors: Perez-Sieira, Sonia; Martinez, Gloria; Porteiro, Begona; Lopez, Miguel; Vidal, Anxo; Nogueiras, Ruben; Dieguez, Carlos
Abstract
Adipose tissue is essential in the regulation of body weight. The key process in fat catabolism and the provision of energy substrate during times of nutrient deprivation or enhanced energy demand is the hydrolysis of triglycerides and the release of fatty acids and glycerol. Nur77 is a member of the NR4A subfamily of nuclear receptors that plays an important metabolic role, modulating hepatic glucose metabolism and lipolysis in muscle. However, its endogenous role on white adipose tissue, as well as the gender dependency of these mechanisms, remains largely unknown. Male and female wild type and Nur77 deficient mice were fed with a high fat diet (45% calories from fat) for 4 months. Mice were analyzed in vivo with the indirect calorimetry system, and tissues were analyzed by real-time PCR and Western blot analysis. Female, but not male Nur77 deficient mice, gained more weight and fat mass when compared to wild type mice fed with high fat diet, which can be explained by decreased energy expenditure. The lack of Nur77 also led to a decreased pHSL/HSL ratio in white adipose tissue and increased expression of CIDEA in brown adipose tissue of female Nur77 deficient mice. Overall, these findings suggest that Nur77 is an important physiological modulator of lipid metabolism in adipose tissue and that there are gender differences in the sensitivity to deletion of the Nur77 signaling. The decreased energy expenditure and the actions of Nur77 on liver, muscle, brown and white adipose tissue contribute to the increased susceptibility to diet-induced obesity in females lacking Nur77.
CIDEA interacts with liver X receptors in white fat cells
FEBS LETTERS
Authors: Kulyte, Agne; Pettersson, Amanda T.; Antonson, Per; Stenson, Britta M.; Langin, Dominique; Gustafsson, Jan-Ake; Staels, Bart; Ryden, Mikael; Arner, Peter; Laurencikiene, Jurga
Abstract
Cell death-inducing DNA fragmentation factor alpha-like effector A (CIDEA) is endogenously expressed in human but not rodent white adipocytes. We performed a bioinformatic analysis of the human CIDEA sequence and found conserved amino-acid motifs involved in binding to nuclear receptors. Protein-protein binding experiments and transactivation assays confirmed that CIDEA binds to liver X receptors and regulates their activity in vitro. Cell fractionation demonstrated that CIDEA localizes to both the cytoplasm and the nucleus in human white adipocytes. The interaction between CIDEA and nuclear receptors could therefore be of importance for the regulation of metabolic processes in human adipose tissue. Structured summary: LXR-beta binds to CIDEA by pull down (View interaction) TIF2 and LXR-beta physically interact by two hybrid (View interaction) LXR-beta binds to RAP250 by pull down (View interaction) CIDEA and LXR-beta physically interact by two hybrid (View interaction) (C) 2011 Federation of European Biochemical Societies. Published by Elsevier B.V. All rights reserved.