Slee A M, Tanzer J M
Infect Immun. 1980 Mar;27(3):922-7. doi: 10.1128/iai.27.3.922-927.1980.
Sucrose and glucose phosphoenolpyruvate-dependent phosphotransferase (PTS) activities were studied in growing cultures of Streptococcus mutans serotype c and d/g cells adapted to either glucose or sucrose. Both acid production and optical absorbance were used to monitor growth in pH-controlled defined growth medium. The sucrose PTS activity appeared to be significant only under conditions of substrate limitation or slow growth as a result of low environmental pH. However, under environmental conditions which permitted rapid growth sucrose PTS activity appeared to be repressed, and only when the cells approached substrate-limited stationary phase after growth on high sucrose-supplemented medium was significant sucrose PTS activity again observed. A mutant apparently defective in sucrose PTS activity grew rapidly and produced acid under conditions of high environmental sucrose level but showed no sucrose PTS activity when the culture approached stationary phase. The mutant, however, after adaptation to glucose, demonstrated significant glucose PTS once the culture had attained the stationary growth phase. During diauxie growth in the presence of glucose and sucrose, there were sequential apparent inductions and repressions of glucose and sucrose PTS activities corresponding to decreases and increases of growth rate on the two substrates. Thus, S. mutans possesses at least two transport mechanisms for each substrate studied. One system (PTS) functions under conditions permitting slow growth and another functions under conditions permitting rapid growth.
在适应葡萄糖或蔗糖的变形链球菌血清型c和d/g细胞的生长培养物中,研究了蔗糖以及葡萄糖磷酸烯醇式丙酮酸依赖性磷酸转移酶(PTS)的活性。在pH控制的限定生长培养基中,利用产酸和光吸收来监测生长情况。蔗糖PTS活性似乎仅在底物限制或由于环境pH低导致生长缓慢的条件下才显著。然而,在允许快速生长的环境条件下,蔗糖PTS活性似乎受到抑制,只有当细胞在添加高蔗糖的培养基上生长后接近底物限制的稳定期时,才再次观察到显著的蔗糖PTS活性。一个蔗糖PTS活性明显有缺陷的突变体在高环境蔗糖水平条件下快速生长并产酸,但当培养物接近稳定期时未显示出蔗糖PTS活性。然而,该突变体在适应葡萄糖后,一旦培养物达到稳定生长阶段,就表现出显著的葡萄糖PTS活性。在葡萄糖和蔗糖存在下的二次生长期间,葡萄糖和蔗糖PTS活性存在相继的明显诱导和抑制,这与两种底物上生长速率的降低和增加相对应。因此,变形链球菌对于所研究的每种底物至少拥有两种转运机制。一种系统(PTS)在允许缓慢生长的条件下起作用,另一种在允许快速生长的条件下起作用。