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  • CK2 modulates adipocyte insulin-signaling and is up-regulated in human obesity.

CK2 modulates adipocyte insulin-signaling and is up-regulated in human obesity.

Scientific reports (2017-12-16)
Christian Borgo, Gabriella Milan, Francesca Favaretto, Fabio Stasi, Roberto Fabris, Valentina Salizzato, Luca Cesaro, Anna Belligoli, Marta Sanna, Mirto Foletto, Luca Prevedello, Vincenzo Vindigni, Romeo Bardini, Arianna Donella-Deana, Roberto Vettor
초록

Insulin plays a major role in glucose metabolism and insulin-signaling defects are present in obesity and diabetes. CK2 is a pleiotropic protein kinase implicated in fundamental cellular pathways and abnormally elevated in tumors. Here we report that in human and murine adipocytes CK2-inhibition decreases the insulin-induced glucose-uptake by counteracting Akt-signaling and GLUT4-translocation to the plasma membrane. In mice CK2 acts on insulin-signaling in adipose tissue, liver and skeletal muscle and its acute inhibition impairs glucose tolerance. Notably, CK2 protein-level and activity are greatly up-regulated in white adipose tissue from ob/ob and db/db mice as well as from obese patients, regardless the severity of their insulin-resistance and the presence of pre-diabetes or overt type 2 diabetes. Weight loss obtained by both bariatric surgery or hypocaloric diet reverts CK2 hyper-activation to normal level. Our data suggest a central role of CK2 in insulin-sensitivity, glucose homeostasis and adipose tissue remodeling. CK2 up-regulation is identified as a hallmark of adipose tissue pathological expansion, suggesting a new potential therapeutic target for human obesity.

MATERIALS
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Sigma-Aldrich
Monoclonal Anti-β-Actin antibody produced in mouse, clone AC-15, ascites fluid
Sigma-Aldrich
Rosiglitazone, ≥98% (HPLC)
Sigma-Aldrich
Anti-phospho-PTEN (Ser370) Antibody, Upstate®, from rabbit