Station de Physiologie végétale, Institut National de la Recherche Agronomique, Centre de recherches de Bordeaux, 33 140 Pont de la Maye, France.
Plant Physiol. 1988 Dec;88(4):1015-20. doi: 10.1104/pp.88.4.1015.
Sugar-depleted excised maize (Zea mays L.) root tips were used to study the kinetics and the specificity of hexose uptake. It was found that difficulties induced by bulk diffusion and penetration barriers did not exist with root tips. Several lines of evidence indicate the existence of a complex set of uptake systems for hexoses showing an overall biphasic dependence on external sugar concentrations. The results suggest that the high and the low affinity components might be located on the same carrier. One uptake system was specific for fructose, but the high affinity component was repressed by high concentrations of external glucose. A second system was specific for glucose and its analogs (2-deoxy-d-glucose and 3-O-methyl-d-glucose), and a third one, more complex, had a high affinity for glucose and its analogs but could transport fructose when glucose was not present in the external solution. A simple method is proposed to determine the inhibitor constants in competition experiments.
利用缺糖的离体玉米(Zea mays L.)根尖来研究己糖的吸收动力学和特异性。研究发现,对于根尖来说,并不存在由体扩散和渗透障碍引起的困难。有几条证据表明,存在一套复杂的己糖吸收系统,对外部糖浓度的总体表现出两相依赖性。结果表明,高亲和性和低亲和性组分可能位于同一载体上。一个吸收系统对果糖具有特异性,但高亲和力组分被外部葡萄糖的高浓度抑制。第二个系统对葡萄糖及其类似物(2-脱氧-D-葡萄糖和 3-O-甲基-D-葡萄糖)具有特异性,第三个系统更为复杂,对葡萄糖及其类似物具有高亲和力,但当外部溶液中不存在葡萄糖时,也可以运输果糖。提出了一种简单的方法来确定竞争实验中的抑制剂常数。