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鸡近端盲肠己糖转运系统的特征

Characteristics of the chicken proximal cecum hexose transport system.

作者信息

Ferrer R, Planas J M, Moretó M

出版信息

Pflugers Arch. 1986 Jul;407(1):100-4. doi: 10.1007/BF00580728.

Abstract

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)

摘要

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)

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