Dashper S G, Reynolds E C
Biochemistry and Molecular Biology Unit, School of Dental Science, University of Melbourne, Australia.
Oral Microbiol Immunol. 1993 Jun;8(3):167-71. doi: 10.1111/j.1399-302x.1993.tb00660.x.
Leucine transport in glucose-energized cells of Streptococcus mutans exhibited Michaelis-Menten-type kinetics at low extracellular concentrations, with a K1 of 15.3 microM and a Vmax of 6.1 nmol/mg dry weight/min. At high extracellular leucine concentrations, the transmembrane diffusion of leucine was not saturable, indicating that passive diffusion becomes a significant mechanism of leucine transmembrane movement under these conditions. The proton motive force (PMF) was measured in glucose-energized cells of S. mutans and was found to have a maximum value of 126 mV at an extracellular pH (pH0) of 5.0; this decreased to 45 mV at pH0 8.0. The intracellular accumulation of leucine was significantly correlated with the magnitude of the PMF. The addition of excess isoleucine or valine caused a marked decrease in the leucine transport rate. Maximal rates of leucine transport occurred at pH0 6.0, and the rate of leucine transport was independent of the growth medium. The results suggest that there is a PMF-driven, branched-chain amino acid carrier in S. mutans with a proton: substrate stoichiometry of 1.
在变形链球菌的葡萄糖供能细胞中,亮氨酸转运在低细胞外浓度时呈现米氏动力学,K1为15.3微摩尔,Vmax为6.1纳摩尔/毫克干重/分钟。在高细胞外亮氨酸浓度下,亮氨酸的跨膜扩散不饱和,表明在这些条件下被动扩散成为亮氨酸跨膜移动的重要机制。在变形链球菌的葡萄糖供能细胞中测量了质子动力势(PMF),发现在细胞外pH(pH0)为5.0时其最大值为126毫伏;在pH0为8.0时降至45毫伏。亮氨酸的细胞内积累与PMF的大小显著相关。添加过量的异亮氨酸或缬氨酸导致亮氨酸转运速率显著降低。亮氨酸转运的最大速率出现在pH0为6.0时,且亮氨酸转运速率与生长培养基无关。结果表明,变形链球菌中存在一种由PMF驱动的支链氨基酸载体,质子与底物的化学计量比为1。