Ibrahimi A, Bonen A, Blinn W D, Hajri T, Li X, Zhong K, Cameron R, Abumrad N A
Department of Physiology and Biophysics, State University of New York, Stony Brook, New York 11794-8661, USA.
J Biol Chem. 1999 Sep 17;274(38):26761-6. doi: 10.1074/jbc.274.38.26761.
Increasing evidence has implicated the membrane protein CD36 (FAT) in binding and transport of long chain fatty acids (FA). To determine the physiological role of CD36, we examined effects of its overexpression in muscle, a tissue that depends on FA for its energy needs and is responsible for clearing a major fraction of circulating FA. Mice with CD36 overexpression in muscle were generated using the promoter of the muscle creatine kinase gene (MCK). Transgenic (MCK-CD36) mice had a slightly lower body weight than control litter mates. This reflected a leaner body mass with less overall adipose tissue, as evidenced by magnetic resonance spectroscopy. Soleus muscles from transgenic animals exhibited a greatly enhanced ability to oxidize fatty acids in response to stimulation/contraction. This increased oxidative ability was not associated with significant alterations in histological appearance of muscle fibers. Transgenic mice had lower blood levels of triglycerides and fatty acids and a reduced triglyceride content of very low density lipoproteins. Blood cholesterol levels were slightly lower, but no significant decrease in the cholesterol content of major lipoprotein fractions was measured. Blood glucose was significantly increased, while insulin levels were similar in the fed state and higher in the fasted state. However, glucose tolerance curves, determined at 20 weeks of age, were similar in control and transgenic mice. In summary, the study documented, in vivo, the role of CD36 to facilitate cellular FA uptake. It also illustrated importance of the uptake process in muscle to overall FA metabolism and glucose utilization.
越来越多的证据表明膜蛋白CD36(FAT)参与长链脂肪酸(FA)的结合和转运。为了确定CD36的生理作用,我们研究了其在肌肉中过表达的影响,肌肉是一个依赖FA满足能量需求且负责清除大部分循环FA的组织。利用肌肉肌酸激酶基因(MCK)的启动子构建了肌肉中CD36过表达的小鼠。转基因(MCK-CD36)小鼠的体重略低于同窝对照小鼠。磁共振波谱显示,这反映出其瘦体重增加,总体脂肪组织减少。转基因动物的比目鱼肌在受到刺激/收缩时氧化脂肪酸的能力大大增强。这种氧化能力的增强与肌纤维组织学外观的显著改变无关。转基因小鼠的血液甘油三酯和脂肪酸水平较低,极低密度脂蛋白的甘油三酯含量降低。血液胆固醇水平略低,但主要脂蛋白组分的胆固醇含量没有显著下降。血糖显著升高,而在进食状态下胰岛素水平相似,在禁食状态下更高。然而,在20周龄时测定的葡萄糖耐量曲线在对照小鼠和转基因小鼠中相似。总之,该研究在体内证明了CD36促进细胞摄取FA的作用。它还说明了肌肉摄取过程对整体FA代谢和葡萄糖利用的重要性。