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TNIK is a conserved regulator of glucose and lipid metabolism in obesity

Obesity and type 2 diabetes (T2D) are growing health challenges with unmet treatment needs. Traf2- and NCK-interacting protein kinase (TNIK) is a recently identified obesity- and T2D-associated gene with unknown functions. We show that TNIK governs lipid and glucose homeostasis in and mice. Loss of...

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Published in:Science advances 2023-08, Vol.9 (32), p.eadf7119-eadf7119
Main Authors: Pham, T C Phung, Dollet, Lucile, Ali, Mona S, Raun, Steffen H, Møller, Lisbeth L V, Jafari, Abbas, Ditzel, Nicholas, Andersen, Nicoline R, Fritzen, Andreas M, Gerhart-Hines, Zachary, Kiens, Bente, Suomalainen, Anu, Simpson, Stephen J, Salling Olsen, Morten, Kieser, Arnd, Schjerling, Peter, Nieminen, Anni I, Richter, Erik A, Havula, Essi, Sylow, Lykke
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Language:English
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Summary:Obesity and type 2 diabetes (T2D) are growing health challenges with unmet treatment needs. Traf2- and NCK-interacting protein kinase (TNIK) is a recently identified obesity- and T2D-associated gene with unknown functions. We show that TNIK governs lipid and glucose homeostasis in and mice. Loss of the ortholog of , , altered the metabolite profiles and impaired de novo lipogenesis in high sugar-fed larvae. knockout mice exhibited hyperlocomotor activity and were protected against diet-induced fat expansion, insulin resistance, and hepatic steatosis. The improved lipid profile of knockout mice was accompanied by enhanced skeletal muscle and adipose tissue insulin-stimulated glucose uptake and glucose and lipid handling. Using the T2D Knowledge Portal and the UK Biobank, we observed associations of variants with blood glucose, HbA1c, body mass index, body fat percentage, and feeding behavior. These results define an untapped paradigm of TNIK-controlled glucose and lipid metabolism.
ISSN:2375-2548
2375-2548
DOI:10.1126/sciadv.adf7119