Hepatic p63 regulates glucose metabolism by repressing SIRT1
Gonzalez-Rellan, M.J.; Novoa, E.; Da Silva Lima, N.; Rodriguez, A.; Veyrat-Durebex, C.; Seoane, S.; Porteiro Couto, Begoña; Fondevila, M.F.; Fernandez, U.; Varela-Rey, M.; Senra, A.; Iglesias, C.; Escudero, A.; Fidalgo Pérez, Miguel Ángel; Guallar, D.; Perez-Fernandez, R.; Prevot, V.; Schwaninger, M.; López Pérez, Miguel A.; Diéguez González, Carlos; Coppari, R.; Frühbeck, G.; Nogueiras Pozo, Rubén

Identificadores
Identificadores
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Fecha de publicación
2023Título de revista
Gut
Tipo de contenido
Artigo
MeSH
Animals | Mice | Diabetes Mellitus, Type 2 | Glucose | Liver | Pyruvates | Sirtuin 1 | Trans-ActivatorsResumen
Objective p63 is a transcription factor within the p53 protein family that has key roles in development, differentiation and prevention of senescence, but its metabolic actions remain largely unknown. Herein, we investigated the physiological role of p63 in glucose metabolism. Design We used cell lines and mouse models to genetically manipulate p63 in hepatocytes. We also measured p63 in the liver of patients with obesity with or without type 2 diabetes (T2D). Results We show that hepatic p63 expression is reduced on fasting. Mice lacking the specific isoform TAp63 in the liver (p63LKO) display higher postprandial and pyruvate-induced glucose excursions. These mice have elevated SIRT1 levels, while SIRT1 knockdown in p63LKO mice normalises glycaemia. Overexpression of TAp63 in wild-type mice reduces postprandial, pyruvate-induced blood glucose and SIRT1 levels. Studies carried out in hepatocyte cell lines show that TAp63 regulates SIRT1 promoter by repressing its transcriptional activation. TAp63 also mediates the inhibitory effect of insulin on hepatic glucose production, as silencing TAp63 impairs insulin sensitivity. Finally, protein levels of TAp63 are reduced in obese persons with T2D and are negatively correlated with fasting glucose and homeostasis model assessment index. Conclusions. These results demonstrate that p63 physiologically regulates glucose homeostasis.
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