Department of Food Science and Technology, University of Nebraska-Lincoln, Lincoln, Nebraska 68583-0919.
Appl Environ Microbiol. 1991 Apr;57(4):941-4. doi: 10.1128/aem.57.4.941-944.1991.
Galactose-nonfermenting (Gal) Streptococcus thermophilus TS2 releases galactose into the extracellular medium when grown in medium containing excess lactose. Starved and de-energized Gal cells, however, could be loaded with galactose to levels approximately equal to the extracellular concentration (0 to 50 mM). When loaded cells were separated from the medium and resuspended in fresh broth containing 5 mM lactose, galactose efflux occurred. De-energized, galactose-loaded cells, resuspended in buffer or medium, accumulated [C]lactose at a greater rate and to significantly higher intracellular concentrations than unloaded cells. Uptake of lactose by loaded cells was inhibited more than that by unloaded cells in the presence of extracellular galactose, indicating that a galactose gradient was involved in the exchange system. When de-energized, galactose-loaded cells were resuspended in carbohydrate-free medium at pH 6.7, a proton motive force (Deltap) of 86 to 90 mV was formed, whereas de-energized, nonloaded cells maintained a Deltap of about 56 mV. However, uptake of lactose by loaded cells occurred when the proton motive force was abolished by the addition of an uncoupler or in the presence of a proton-translocating ATPase inhibitor. These results support the hypothesis that galactose efflux in GalS. thermophilus is electrogenic and that the exchange reaction (lactose uptake and galactose efflux) probably occurs via an antiporter system.
当在含有过量乳糖的培养基中生长时,不能发酵半乳糖的(Gal)嗜热链球菌 TS2 将半乳糖释放到细胞外培养基中。然而,饥饿和去能的 Gal 细胞可以被加载半乳糖,达到与细胞外浓度(0 至 50mM)大致相等的水平。当加载的细胞与培养基分离并悬浮在含有 5mM 乳糖的新鲜肉汤中时,半乳糖会流出。在缓冲液或培养基中悬浮的去能、半乳糖加载的细胞以比未加载的细胞更高的速率和更高的细胞内浓度积累 [C]乳糖。在存在细胞外半乳糖的情况下,加载细胞的乳糖摄取比未加载细胞受到更大的抑制,表明存在半乳糖梯度参与交换系统。当去能的、半乳糖加载的细胞在 pH 值为 6.7 的无碳水化合物培养基中悬浮时,形成了 86 至 90mV 的质子动力势(Deltap),而去能的、未加载的细胞保持约 56mV 的 Deltap。然而,当加入解偶联剂或存在质子转运 ATP 酶抑制剂使质子动力势被废除时,加载细胞的乳糖摄取仍会发生。这些结果支持了 GalS. thermophilus 中半乳糖外排是电致的假设,并且交换反应(乳糖摄取和半乳糖外排)可能通过反向转运体系统发生。