The scaffold protein p62 regulates adaptive thermogenesis through ATF2 nuclear target activation
NATURE COMMUNICATIONS
Authors: Fischer, Katrin; Fenzl, Anna; Liu, Dianxin; Dyar, Kenneth A.; Kleinert, Maximilian; Brielmeier, Markus; Clemmensen, Christoffer; Fedl, Anna; Finan, Brian; Gessner, Andre; Jastroch, Martin; Huang, Jianfeng; Keipert, Susanne; Klingenspor, Martin; Bruening, Jens C.; Kneilling, Manfred; Maier, Florian C.; Othman, Ahmed E.; Pichler, Bernd J.; Pramme-Steinwachs, Ines; Sachs, Stephan; Scheideler, Angelika; Thaiss, Wolfgang M.; Uhlenhaut, Henriette; Ussar, Siegfried; Woods, Stephen C.; Zorn, Julia; Stemmer, Kerstin; Collins, Sheila; Diaz-Meco, Maria; Moscat, Jorge; Tschoep, Matthias H.; Mueller, Timo D.
Abstract
During beta -adrenergic stimulation of brown adipose tissue (BAT), p38 phosphorylates the activating transcription factor 2 (ATF2) which then translocates to the nucleus to activate the expression of Ucp1 and Pgc-1 alpha. The mechanisms underlying ATF2 target activation are unknown. Here we demonstrate that p62 (Sqstm1) binds to ATF2 to orchestrate activation of the Ucp1 enhancer and Pgc-1 alpha promoter. P62(Delta 69-251) mice show reduced expression of Ucp1 and Pgc-1 alpha with impaired ATF2 genomic binding. Modulation of Ucp1 and Pgc-1 alpha expression through p62 regulation of ATF2 signaling is demonstrated in vitro and in vivo in p62(Delta 69-251) mice, global p62(-/-) and Ucp1-Cre p62(flx/flx) mice. BAT dysfunction resulting from p62 deficiency is manifest after birth and obesity subsequently develops despite normal food intake, intestinal nutrient absorption and locomotor activity. In summary, our data identify p62 as a master regulator of BAT function in that it controls the Ucp1 pathway through regulation of ATF2 genomic binding. Beta-adrenergic stimulation of brown adipose tissue leads to thermogenesis via the activating transcription factor 2 (ATF2) mediated expression of the thermogenic genes Ucp1 and Pgc-1 alpha. Here, the authors show that the scaffold protein p62 regulates brown adipose tissue function through modifying ATF2 genomic binding and subsequent Ucp1 and Pgc-1 alpha induction.
Gymnaster KoraiensisExtract Alleviated Metabolic Syndrome Symptoms and Stimulated UCP1-Independent Energy Consumption via AMPK Activation in White Adipose Tissue
MOLECULAR NUTRITION & FOOD RESEARCH
Authors: Jung, Da Seul; Son, Yang-Ju; Shin, Ji Min; Won, Hyo Jun; Le, Tam Thi; Jung, Sang Hoon; Lee, Chang-Ho; Nho, Chu Won
Abstract
Scope Metabolic syndrome and obesity are rising worldwide concerns that are accompanied by adverse health consequences. Here, it is hypothesized that the ethanol extract fromGymnaster koraiensis(GK), an edible Korean plant known for its anti-cancer and hepatoprotective properties, could attenuate metabolic syndrome-related symptoms in high-fat dietary-induced obese (DIO) mice. Methods and Results Administration of 100 mg kg(-1)GK extract to DIO mice effectively reduces body and white adipose tissue (WAT) weight. It also reduces cardiovascular disease risk and improves insulin resistance by lowering the fasting blood glucose levels and mitigating oxidative stress and inflammation. Moreover, supplementation with GK causes elevated energy expenditure in WAT by increasing the mitochondrial oxidative capacity and lipid catabolism through upregulated adenosine monophosphate-activated protein kinase (AMPK) signaling. Orlistat is used as a positive control drug due to its widespread use in previous studies. It is found that GK extract causes weight loss, similar to Orlistat, and it additionally shows unique functions, such as upregulation of energy consumption in WAT. Conclusion GK extract treatment prominently reduces obesity and its associated metabolic complications, such as hyperlipidemia, hyperglycemia, and insulin resistance. Hence, It can be used as a promising multi-target functional food that can improve metabolic syndrome-related symptoms.