脂肪生成
胰岛素抵抗
生物
胰岛素受体
内科学
内分泌学
胰岛素
脂肪变性
肝X受体
基因敲除
脂肪肝
转录因子
核受体
脂质代谢
生物化学
医学
基因
细胞凋亡
疾病
作者
Lucie Popineau,Lucille Morzyglod,Nadège Carré,Michèle Caüzac,Pascale Bossard,Carina Prip‐Buus,Véronique Lenoir,Bruno Ragazzon,Véronique Fauveau,Lorenne Robert,Sandra Guilmeau,Catherine Postic,Masaaki Komatsu,François Canonne‐Hergaux,Hervé Guillou,Anne‐Françoise Burnol
摘要
A long-standing paradox in the pathophysiology of metabolic diseases is the selective insulin resistance of the liver. It is characterized by a blunted action of insulin to reduce glucose production, contributing to hyperglycemia, while de novo lipogenesis remains insulin sensitive, participating in turn to hepatic steatosis onset. The underlying molecular bases of this conundrum are not yet fully understood. Here, we established a model of selective insulin resistance in mice by silencing an inhibitor of insulin receptor catalytic activity, the growth factor receptor binding protein 14 (Grb14) in liver. Indeed, Grb14 knockdown enhanced hepatic insulin signaling but also dramatically inhibited de novo fatty acid synthesis. In the liver of obese and insulin-resistant mice, downregulation of Grb14 markedly decreased blood glucose and improved liver steatosis. Mechanistic analyses showed that upon Grb14 knockdown, the release of p62/sqstm1, a partner of Grb14, activated the transcription factor nuclear factor erythroid-2-related factor 2 (Nrf2), which in turn repressed the lipogenic nuclear liver X receptor (LXR). Our study reveals that Grb14 acts as a new signaling node that regulates lipogenesis and modulates insulin sensitivity in the liver by acting at a crossroad between the insulin receptor and the p62-Nrf2-LXR signaling pathways.
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