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Altered hepatic and muscle substrate utilization provoked by GLUT4 ablation.

机译:GLUT4消融引起肝和肌肉底物利用率改变。

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摘要

Studies were conducted to explore altered substrate utilization and metabolism in GLUT4 null mice. Liver fatty acid synthase mRNA and fatty acid synthesis rates were dramatically increased in GLUT4 null mice compared with control mice and were supported by increased rates of the pentose phosphate pathway oxidative phase and sterol regulatory binding protein mRNA expression. Increased GLUT2 protein content, glucokinase mRNA, and glucose-6-phosphate in GLUT4 null mice may provide substrate for the enhanced fatty acid synthesis. Increased fatty acid synthesis, however, did not lead to hepatic triglyceride accumulation in GLUT4 null mice because of increased hepatic triglyceride secretion rates. GLUT4 null mice rapidly cleared orally administered olive oil, had reduced serum triglyceride concentrations in the fed and the fasted state, and increased skeletal muscle lipoprotein lipase when compared with controls. Oleate oxidation rates were increased in GLUT4 null skeletal muscle in association with mitochondrial hyperplasia/hypertrophy. This study demonstrated that GLUT4 null mice had increased hepatic glucose uptake and conversion into triglyceride for subsequent use by muscle. The ability of GLUT4 null mice to alter hepatic carbohydrate and lipid metabolism to provide proper nutrients for peripheral tissues may explain (in part) their ability to resist diabetes when fed a normal diet.
机译:进行了研究以探索GLUT4 null小鼠中底物利用率和代谢的改变。与对照小鼠相比,GLUT4 null小鼠的肝脏脂肪酸合酶mRNA和脂肪酸合成速率显着增加,并受到戊糖磷酸途径氧化相和固醇调节结合蛋白mRNA表达速率增加的支持。 GLUT4缺失小鼠中增加的GLUT2蛋白含量,葡萄糖激酶mRNA和6-磷酸葡萄糖可为增强脂肪酸合成提供底物。但是,由于肝脏甘油三酸酯的分泌速率增加,因此脂肪酸合成的增加并未导致GLUT4无小鼠中肝脏甘油三酸酯的积累。与对照组相比,GLUT4空小鼠迅速清除口服橄榄油,在进食和禁食状态下血清甘油三酸酯浓度降低,骨骼肌脂蛋白脂肪酶升高。与线粒体增生/肥大相关的GLUT4无效骨骼肌中油酸盐的氧化速率增加。这项研究表明,GLUT4缺失的小鼠增加了肝脏对葡萄糖的摄取,并转化为甘油三酸酯,供肌肉随后使用。 GLUT4无效小鼠改变肝糖和脂质代谢以为周围组织提供适当营养的能力可能(部分)解释了他们在接受正常饮食后抵抗糖尿病的能力。

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