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Glucagon stimulates gluconeogenesis by INSP3Rl-mediated hepatic lipolysis

机译:胰高血糖素通过INSP3R1介导的肝脂解刺激糖异生

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Although it is well-established that reductions in the ratio of insulin to glucagon in the portal vein have a major role in the dysregulation of hepatic glucose metabolism in type-2 diabetes(1-3), the mechanisms by which glucagon affects hepatic glucose production and mitochondrial oxidation are poorly understood. Here we show that glucagon stimulates hepatic gluconeogenesis by increasing the activity of hepatic adipose triglyceride lipase, intrahepatic lipolysis, hepatic acetyl-CoA content and pyruvate carboxylase flux, while also increasing mitochondrial fat oxidation-all of which are mediated by stimulation of the inositol triphosphate receptor 1 (INSP3R1). In rats and mice, chronic physiological increases in plasma glucagon concentrations increased mitochondrial oxidation of fat in the liver and reversed diet-induced hepatic steatosis and insulin resistance. However, these effects of chronic glucagon treatment-reversing hepatic steatosis and glucose intolerance-were abrogated in Insp3r1 (also known as Itpr1)-knockout mice. These results provide insights into glucagon biology and suggest that INSP3R1 may represent a target for therapies that aim to reverse nonalcoholic fatty liver disease and type-2 diabetes.
机译:虽然公认的是,门静脉中胰岛素与胰高血糖素的比例降低在2型糖尿病的肝糖代谢失调中起主要作用(1-3),这是胰高血糖素影响肝葡萄糖生成的机制和线粒体的氧化了解甚少。在这里,我们显示胰高血糖素可通过增加肝脂肪甘油三酯脂肪酶,肝内脂解,肝乙酰辅酶A含量和丙酮酸羧化酶通量的活性来刺激肝糖异生,同时也增加线粒体脂肪的氧化-所有这些都是通过刺激肌醇三磷酸受体来介导的1(INSP3R1)。在大鼠和小鼠中,血浆胰高血糖素浓度的长期生理增加会增加肝脏中脂肪的线粒体氧化,并逆转饮食引起的肝脂肪变性和胰岛素抵抗。但是,在Insp3r1(也称为Itpr1)敲除小鼠中,慢性胰高血糖素治疗逆转肝脂肪变性和葡萄糖不耐症的这些作用被取消。这些结果提供了对胰高血糖素生物学的见解,并表明INSP3R1可能代表旨在逆转非酒精性脂肪肝疾病和2型糖尿病的疗法的目标。

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