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甘油异生作用是大鼠体内甘油三酯甘油合成的主要途径。

Glyceroneogenesis is the dominant pathway for triglyceride glycerol synthesis in vivo in the rat.

作者信息

Nye Colleen K, Hanson Richard W, Kalhan Satish C

机构信息

Department of Biochemistry, Case Western Reserve University, Cleveland, Ohio 44106; Departments of Gastroenterology and Pathobiology, Cleveland Clinic, Cleveland, Ohio 44195.

Departments of Gastroenterology and Pathobiology, Cleveland Clinic, Cleveland, Ohio 44195; Department of Medicine, Cleveland Clinic Lerner College of Medicine of Case Western Reserve University, Cleveland Clinic, Cleveland, Ohio 44195.

出版信息

J Biol Chem. 2008 Oct 10;283(41):27565-27574. doi: 10.1074/jbc.M804393200. Epub 2008 Jul 28.

Abstract

Triglyceride synthesis in mammalian tissues requires glycerol 3-phosphate as the source of triglyceride glycerol. In this study the relative contribution of glyceroneogenesis and glycolysis to triglyceride glycerol synthesis was quantified in vivo in adipose tissue, skeletal muscle, and liver of the rat in response to a chow diet (controls), 48-h fast, and lipogenic (high sucrose) diet. The rate of glyceroneogenesis was quantified using the tritium ([(3)H(2)]O) labeling of body water, and the contribution of glucose, via glycolysis, was determined using a [U-(14)C]glucose tracer. In epididymal and mesenteric adipose tissue of control rats, glyceroneogenesis accounted for approximately 90% of triglyceride glycerol synthesis. Fasting for 48 h did not alter glyceroneogenesis in adipose tissue, whereas the contribution of glucose was negligible. In response to sucrose feeding, the synthesis of triglyceride glycerol via both glyceroneogenesis and glycolysis nearly doubled (versus controls); however, glyceroneogenesis remained quantitatively higher as compared with the contribution of glucose. Enhancement of triglyceride-fatty acid cycling by epinephrine infusion resulted in a higher rate of glyceroneogenesis in adipose tissue, as compared with controls, whereas the contribution of glucose via glycolysis was not measurable. Glyceroneogenesis provided the majority of triglyceride glycerol in the gastrocnemius and soleus. In the liver the fractional contribution of glyceroneogenesis remained constant (approximately 60%) under all conditions and was higher than that of glucose. Thus, glyceroneogenesis, in contrast to glucose, via glycolysis, is quantitatively the predominant source of triglyceride glycerol in adipose tissue, skeletal muscle, and liver of the rat during fasting and high sucrose feeding.

摘要

哺乳动物组织中的甘油三酯合成需要3-磷酸甘油作为甘油三酯甘油的来源。在本研究中,在大鼠的脂肪组织、骨骼肌和肝脏中,通过给予普通饮食(对照组)、禁食48小时和生脂(高蔗糖)饮食,对甘油生成和糖酵解对甘油三酯甘油合成的相对贡献进行了体内定量。使用体水的氚([³H₂]O)标记对甘油生成速率进行定量,并使用[U-¹⁴C]葡萄糖示踪剂确定葡萄糖通过糖酵解的贡献。在对照大鼠的附睾和肠系膜脂肪组织中,甘油生成约占甘油三酯甘油合成的90%。禁食48小时并未改变脂肪组织中的甘油生成,而葡萄糖的贡献可忽略不计。在给予蔗糖后,通过甘油生成和糖酵解的甘油三酯甘油合成几乎增加了一倍(与对照组相比);然而,与葡萄糖的贡献相比,甘油生成在数量上仍然更高。与对照组相比,通过肾上腺素输注增强甘油三酯-脂肪酸循环导致脂肪组织中甘油生成速率更高,而通过糖酵解的葡萄糖贡献无法测量。甘油生成提供了腓肠肌和比目鱼肌中大部分的甘油三酯甘油。在肝脏中,在所有条件下甘油生成的分数贡献保持恒定(约60%),且高于葡萄糖的贡献。因此,与通过糖酵解的葡萄糖相比,在禁食和高蔗糖喂养期间,甘油生成在数量上是大鼠脂肪组织、骨骼肌和肝脏中甘油三酯甘油的主要来源。

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