Zhang Shihai, Yang Qing, Ren Man, Qiao Shiyan, He Pingli, Li Defa, Zeng Xiangfang
1State Key Laboratory of Animal Nutrition,China Agricultural University,No. 2 Yuanmingyuan West Road,Haidian District Beijing 100193,People's Republic of China.
Br J Nutr. 2016 Aug;116(4):593-602. doi: 10.1017/S0007114516002439.
Knowledge of regulation of glucose transport contributes to our understanding of whole-body glucose homoeostasis and human metabolic diseases. Isoleucine has been reported to participate in regulation of glucose levels in many studies; therefore, this study was designed to examine the effect of isoleucine on intestinal and muscular GLUT expressions. In an animal experiment, muscular GLUT and intestinal GLUT were determined in weaning pigs fed control or isoleucine-supplemented diets. Supplementation of isoleucine in the diet significantly increased piglet average daily gain, enhanced GLUT1 expression in red muscle and GLUT4 expression in red muscle, white muscle and intermediate muscle (P<0·05). In additional, expressions of Na+/glucose co-transporter 1 and GLUT2 were up-regulated in the small intestine when pigs were fed isoleucine-supplemented diets (P<0·05). C2C12 cells were used to examine the expressions of muscular GLUT and glucose uptake in vitro. In C2C12 cells supplemented with isoleucine in the medium, cellular 2-deoxyglucose uptake was increased (P<0·05) through enhancement of the expressions of GLUT4 and GLUT1 (P<0·05). The effect of isoleucine was greater than that of leucine on glucose uptake (P<0·05). Compared with newborn piglets, 35-d-old piglets have comparatively higher GLUT4, GLUT2 and GLUT5 expressions. The results of this study demonstrated that isoleucine supplementation enhanced the intestinal and muscular GLUT expressions, which have important implications that suggest that isoleucine could potentially increase muscle growth and intestinal development by enhancing local glucose uptake in animals and human beings.
了解葡萄糖转运的调节机制有助于我们理解全身葡萄糖稳态和人类代谢疾病。在许多研究中,异亮氨酸已被报道参与葡萄糖水平的调节;因此,本研究旨在探讨异亮氨酸对肠道和肌肉中葡萄糖转运蛋白(GLUT)表达的影响。在一项动物实验中,测定了饲喂对照日粮或添加异亮氨酸日粮的断奶仔猪肌肉和肠道中的GLUT。日粮中添加异亮氨酸显著提高了仔猪的平均日增重,增强了红色肌肉中GLUT1的表达以及红色肌肉、白色肌肉和中间肌肉中GLUT4的表达(P<0·05)。此外,当猪饲喂添加异亮氨酸的日粮时,小肠中钠/葡萄糖共转运蛋白1和GLUT2的表达上调(P<0·05)。利用C2C12细胞在体外检测肌肉GLUT的表达和葡萄糖摄取。在培养基中添加异亮氨酸的C2C12细胞中,通过增强GLUT4和GLUT1的表达(P<0·05),细胞对2-脱氧葡萄糖的摄取增加(P<0·05)。异亮氨酸对葡萄糖摄取的影响大于亮氨酸(P<0·05)。与新生仔猪相比,35日龄仔猪的GLUT4、GLUT2和GLUT5表达相对较高。本研究结果表明,添加异亮氨酸可增强肠道和肌肉中GLUT的表达,这具有重要意义,提示异亮氨酸可能通过增强动物和人类局部葡萄糖摄取来促进肌肉生长和肠道发育。