Ferrer R, Planas J M, Moretó M
Pflugers Arch. 1986 Jul;407(1):100-4. doi: 10.1007/BF00580728.
The properties of the sugar transport system present in chicken proximal cecum have been studied and compared to the jejunal transport system. Experiments were carried out in isolated enterocytes from 5- to 7-weak-old birds. Results show that: (1) Cecal cells are capable of high sugar transport rates by a phloridzin-sensitive mechanism. After 60 min incubation, the accumulation ratio (control/phloridzin-incubated cells) for 0.1 mmol/l alpha-methyl-D-glucoside (alpha-MG) was 43 and that of 3-oxy-methyl-D-glucose (3-OMG) was 25. In jejunal cells, ratios were 37 for alpha-MG and 13 for 3-OMG. The differences found in cumulative capacity of 3-OMG between cecal and jejunal cells suggest that the sodium-independent pathway offers a very small contribution to sugar efflux in the steady-state in the former cells. (2) Lowering external Na+ concentration reduces the steady-state alpha-MG accumulation in cecal cells (as in jejunal cells), indicating that the transport system is Na+-dependent. (3) The process depends on the electrochemical Na+ gradient across the cell membrane since both 2,4-dinitrophenol (0.2 mmol/l) and ouabain (0.25 mmol/l) abolish sugar accumulation. (4) Addition of 10 mmol/l) 3-OMG to the incubation medium markedly reduces the uptake of alpha-MG (concentration: 0.1 mmol/l), indicating that the cecal transport system can be inhibited by analogues of the transported substrate. (5) The specific sugar transport process is a saturable function of alpha-MG concentration, the apparent Km being 1.02 mmol/l and Vm 10.7 mmol/mg cell protein X min.(ABSTRACT TRUNCATED AT 250 WORDS)
对鸡近端盲肠中存在的糖转运系统的特性进行了研究,并与空肠转运系统进行了比较。实验在5至7周龄鸡的分离肠上皮细胞中进行。结果表明:(1)盲肠细胞能够通过一种根皮苷敏感机制进行高糖转运速率。孵育60分钟后,0.1 mmol/L α-甲基-D-葡萄糖苷(α-MG)的积累率(对照/根皮苷孵育细胞)为43,3-氧甲基-D-葡萄糖(3-OMG)的积累率为25。在空肠细胞中,α-MG的比率为37,3-OMG的比率为13。盲肠和空肠细胞之间3-OMG累积能力的差异表明,在前一种细胞的稳态中,钠非依赖性途径对糖流出的贡献非常小。(2)降低细胞外Na+浓度会降低盲肠细胞(与空肠细胞一样)中α-MG的稳态积累,表明转运系统是Na+依赖性的。(3)该过程取决于跨细胞膜的电化学Na+梯度,因为2,4-二硝基苯酚(0.2 mmol/L)和哇巴因(0.25 mmol/L)都会消除糖积累。(4)在孵育培养基中添加10 mmol/L 3-OMG会显著降低α-MG(浓度:0.1 mmol/L)的摄取,表明盲肠转运系统可被转运底物的类似物抑制。(5)特定的糖转运过程是α-MG浓度的饱和函数,表观Km为1.02 mmol/L,Vm为10.7 mmol/mg细胞蛋白×分钟。(摘要截断于250字)