Van den Broek P J, Van Steveninck J
Biochim Biophys Acta. 1982 Dec 8;693(1):213-20. doi: 10.1016/0005-2736(82)90489-8.
A theoretical description of initial uptake kinetics of H+/sugar symport is given, with emphasis on the differences between carrier and non-carrier systems. Transport of methyl beta-D-thiogalactoside in Saccharomyces fragilis is shown to proceed via the inducible lactose transporter. Uptake of this sugar stimulates electrogenic H+ influx. Together with the correlation between methyl beta-D-thiogalactoside accumulation and the proton-motive force this shows that transport proceeds via H+ symport. Kinetic analysis of initial influx revealed that transport proceeds via a single transport system, sensitive to changes in membrane potential. The pH dependence of the kinetic parameters showed that Kapp is almost pH insensitive, whereas Vapp decreases strongly at increasing extracellular pH. It is shown that transport proceeds, most likely, via a non-carrier system, with random binding of H+ and sugar, in a system where binding of the first ligand does not influence binding of the second.
给出了H⁺/糖同向转运初始摄取动力学的理论描述,重点在于载体系统和非载体系统之间的差异。脆弱酵母中β-D-硫代半乳糖苷甲酯的转运显示是通过诱导型乳糖转运体进行的。这种糖的摄取刺激了生电H⁺内流。β-D-硫代半乳糖苷甲酯积累与质子动力之间的相关性表明,转运是通过H⁺同向转运进行的。初始内流的动力学分析表明,转运通过单一转运系统进行,该系统对膜电位变化敏感。动力学参数的pH依赖性表明,表观解离常数(Kapp)几乎对pH不敏感,而表观最大转运速率(Vapp)在细胞外pH升高时强烈降低。结果表明,转运很可能通过非载体系统进行,在该系统中H⁺和糖随机结合,且第一个配体的结合不影响第二个配体的结合。