p110α-dependent hepatocyte signaling is critical for liver gene expression and its rewiring in MASLD
Regnier, M.; Polizzi, A.; Fougeray, T.; Fougerat, A.; Perrier, P.; Anderson, K.; Lippi, Y.; Smati, S.; Lukowicz, C.; Lasserre, F.; Fouche, E.; Huillet, M.; Rives, C.; Tramunt, B.; Naylies, C.; Garcia, G.; Rousseau-Bacquie, E.; Bertrand-Michel, J.; Canlet, C.; Chevolleau-Mege, S.; Debrauwer, L.; Heymes, C.; Burcelin, R.; Levade, T.; Gourdy, P.; Wahli, W.; Blum, Y.; Gamet-Payrastre, L.; Ellero-Simatos, S.; Guillermet-Guibert, J.; Hawkins, P.; Stephens, L.; Montagner, A.; Loiseau, N.; Guillou, H.
Show abstract
Insulin and other growth factors are key regulators of liver gene expression, including in metabolic diseases. Most of the phosphoinositide 3-kinase (PI3K) activity induced by insulin is dependent on PI3K. We used mice lacking p110, the catalytic subunit of PI3K, to investigate its role in the regulation of liver gene expression in health and in Metabolic dysfunction-Associated Steatotic Liver Disease (MASLD). The absence of hepatocyte PI3K signaling promoted glucose intolerance in lean mice and significantly regulated liver gene expression, including insulin-sensitive genes, in ad libitum feeding. Some of the defective regulation of gene expression in response to hepatocyte-restricted insulin receptor deletion was related to PI3K signaling. In addition, though PI3K deletion in hepatocytes promoted insulin resistance, it was protective against steatotic liver disease in diet-induced obesity. In the absence of hepatocyte PI3K, the effect of diet-induced obesity on liver gene expression was significantly altered, with changes in rhythmic gene expression in liver. Altogether, this study highlights the specific role of p110 in the control of liver gene expression in physiology and in the metabolic rewiring that occurs during MASLD.
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