Lodge J, Jacobson G R
Department of Biology, Boston University, Massachusetts 02215.
Infect Immun. 1988 Oct;56(10):2594-600. doi: 10.1128/iai.56.10.2594-2600.1988.
We examined the effects of sugar concentration in the medium on sugar uptake and phosphoenolpyruvate-dependent sugar phosphotransferase system (PTS) activities in Streptococcus mutants GS-5. Kinetic analyses of sucrose uptake in cells harvested under conditions of sucrose excess or sucrose limitation showed that increased uptake under the latter condition was almost completely due to an increase in the Vmax of the high-affinity PTS. In a series of experiments in which cells growing under conditions of sucrose or glucose excess were shifted to a medium lacking sugar, starvation resulted in a stimulation of sugar uptake and a parallel increase in PTS activity. These starvation-induced increases in PTS-mediated uptake were not affected by the presence of either chloramphenicol or rifampin during the starvation period, indicating that neither protein nor RNA synthesis was necessary for the stimulation. In vivo labeling experiments with 32Pi revealed that uptake stimulation during starvation was accompanied by a loss of acid-stable phosphate covalently bound to the phosphocarrier protein HPr of the PTS. We conclude, therefore, that stimulation of PTS-mediated uptake of sucrose and glucose during sugar limitation in S. mutans GS-5 is at least partially the result of increased activities of preexisting PTS proteins and that this may be due, at least in part, to dephosphorylation of a previously identified site in S. mutans HPr that can be phosphorylated by an ATP-dependent kinase.
我们研究了培养基中糖浓度对变形链球菌GS-5中糖摄取以及磷酸烯醇丙酮酸依赖性糖磷酸转移酶系统(PTS)活性的影响。对在蔗糖过量或蔗糖限制条件下收获的细胞中蔗糖摄取的动力学分析表明,在后一种条件下摄取增加几乎完全归因于高亲和力PTS的Vmax增加。在一系列实验中,将在蔗糖或葡萄糖过量条件下生长的细胞转移到无糖培养基中,饥饿导致糖摄取增加以及PTS活性平行增加。在饥饿期间,氯霉素或利福平的存在均不影响这些饥饿诱导的PTS介导的摄取增加,这表明蛋白质合成和RNA合成对于这种刺激均非必需。用³²P₁进行的体内标记实验表明,饥饿期间摄取刺激伴随着与PTS的磷酸载体蛋白HPr共价结合的酸稳定磷酸盐的丢失。因此,我们得出结论,在变形链球菌GS-5中糖限制期间,PTS介导的蔗糖和葡萄糖摄取的刺激至少部分是现有PTS蛋白活性增加的结果,并且这可能至少部分归因于变形链球菌HPr中先前鉴定的可被ATP依赖性激酶磷酸化的位点的去磷酸化。