Christoffolete Marcelo Augusto, Silva William Jose, Ramos Gracielle Vieira, Bento Mirella Ribeiro, Costa Monique Oliveira, Ribeiro Miriam Oliveira, Okamoto Maristela Mitiko, Lohmann Tania Helena, Machado Ubiratan Fabres, Musarò Antonio, Moriscot Anselmo Sigari
Department of Anatomy, Institute of Biomedical Sciences, University of São Paulo, 05508-000 São Paulo, SP, Brazil ; Centro de Ciências Naturais e Humanas (CCNH), Universidade Federal do ABC (UFABC), 09210-580 Santo André, SP, Brazil.
Department of Anatomy, Institute of Biomedical Sciences, University of São Paulo, 05508-000 São Paulo, SP, Brazil.
Biomed Res Int. 2015;2015:282984. doi: 10.1155/2015/282984. Epub 2015 Feb 4.
We characterized the metabolic profile of transgenic mice exhibiting enhanced muscle mass driven by increased mIGF-1 expression (MLC/mIGF-1). As expected, 6-month-old MLC/mIGF-1 mice were heavier than age-matched wild type (WT) mice (37.4 ± 0.3 versus 31.8 ± 0.6 g, resp.). MLC/mIGF-1 mice had higher respiratory quotient when compared to WT (0.9 ± 0.03 versus 0.74 ± 0.02, resp.) suggesting a preference for carbohydrate as the major fuel source. MLC/mIGF-1 mice had a higher rate of glucose disposal when compared to WT (3.25 ± 0.14 versus 2.39 ± 0.03%/min, resp.). The higher disposal rate correlated to ∼ 2-fold higher GLUT4 content in the extensor digitorum longus (EDL) muscle. Analysis of mRNA content for the glycolysis-related gene PFK-1 showed ∼ 3-fold upregulation in MLC/mIGF-1 animals. We also found a 50% downregulation of PGC1α mRNA levels in MLC/mIGF-1 mouse EDL muscle, suggesting less abundant mitochondria in this tissue. We found no difference in the expression of PPARα and PPARβ/δ, suggesting no modulation of key elements in oxidative metabolism. These data together suggest a shift in metabolism towards higher carbohydrate utilization, and that could explain the increased insulin sensitivity of hypertrophied skeletal muscle in MLC/mIGF-1 mice.
我们对通过增加mIGF-1表达驱动而表现出肌肉量增加的转基因小鼠(MLC/mIGF-1)的代谢概况进行了表征。正如预期的那样,6个月大的MLC/mIGF-1小鼠比年龄匹配的野生型(WT)小鼠更重(分别为37.4±0.3克和31.8±0.6克)。与WT相比,MLC/mIGF-1小鼠具有更高的呼吸商(分别为0.9±0.03和0.74±0.02),表明其偏好将碳水化合物作为主要燃料来源。与WT相比,MLC/mIGF-1小鼠具有更高的葡萄糖处置率(分别为3.25±0.14%/分钟和2.39±0.03%/分钟)。更高的处置率与趾长伸肌(EDL)中GLUT4含量高出约2倍相关。对糖酵解相关基因PFK-1的mRNA含量分析显示,MLC/mIGF-1动物中该基因上调约3倍。我们还发现MLC/mIGF-1小鼠EDL肌肉中PGC1α mRNA水平下调了50%,表明该组织中线粒体数量较少。我们发现PPARα和PPARβ/δ的表达没有差异,表明氧化代谢中的关键元件没有受到调节。这些数据共同表明代谢向更高的碳水化合物利用方向转变,这可以解释MLC/mIGF-1小鼠中肥大骨骼肌胰岛素敏感性增加的现象。