Article ID Journal Published Year Pages File Type
2792627 Cell Metabolism 2014 12 Pages PDF
Abstract

•Xbp1s in Pomc neurons protects against ER stress-induced leptin/insulin resistance•Xbp1s in Pomc neurons improves glucose levels and hepatic insulin sensitivity•Pomc-specific xbp1s protects against high-fat diet-induced obesity•Pomc-specific xbp1s regulates the UPRER in the liver

SummaryThe molecular mechanisms underlying neuronal leptin and insulin resistance in obesity and diabetes remain unclear. Here we show that induction of the unfolded protein response transcription factor spliced X-box binding protein 1 (Xbp1s) in pro-opiomelanocortin (Pomc) neurons alone is sufficient to protect against diet-induced obesity as well as improve leptin and insulin sensitivity, even in the presence of strong activators of ER stress. We also demonstrate that constitutive expression of Xbp1s in Pomc neurons contributes to improved hepatic insulin sensitivity and suppression of endogenous glucose production. Notably, elevated Xbp1s levels in Pomc neurons also resulted in activation of the Xbp1s axis in the liver via a cell-nonautonomous mechanism. Together our results identify critical molecular mechanisms linking ER stress in arcuate Pomc neurons to acute leptin and insulin resistance as well as liver metabolism in diet-induced obesity and diabetes.

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