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生长条件对变形链球菌和远缘链球菌在连续培养中磷酸烯醇式丙酮酸:糖磷酸转移酶系统各组分水平的影响。

Effect of growth conditions on levels of components of the phosphoenolpyruvate:sugar phosphotransferase system in Streptococcus mutans and Streptococcus sobrinus grown in continuous culture.

作者信息

Vadeboncoeur C, Thibault L, Neron S, Halvorson H, Hamilton I R

机构信息

Department of Biochemistry, Faculty of Sciences, School of Dental Medicine, Laval University, Ste-Foy, Quebec, Canada.

出版信息

J Bacteriol. 1987 Dec;169(12):5686-91. doi: 10.1128/jb.169.12.5686-5691.1987.

Abstract

The membrane-bound, sugar-specific enzyme II (EII) component of the phosphoenolpyruvate:sugar phosphotransferase system (PTS) in Streptococcus mutans Ingbritt is repressed by growth on glucose under various conditions in continuous culture. Compared with optimal PTS conditions (i.e., glucose limitation, dilution rate [D] of 0.1 h-1, and pH 7.0), EII activity for glucose (EIIGlc) and mannose (EIIMan) in cells grown at a D of 0.4 h-1 and pH 5.5 with the same glucose concentration was reduced 24- to 27-fold. EII activity with methyl alpha-glucoside and 2-deoxyglucose was reduced 6- and 26-fold, respectively. Growth with excess glucose (i.e., nitrogen limitation) resulted in 26- to 88-fold repression of EII activity with these substrates. The above conditions of low pH, high dilution rate, and excess glucose also repressed EII activity for fructose (EIIFru), but to a lesser extent (two- to fivefold). Conversely, growth of S. mutans DR0001 at a D of 0.2 h-1 and pH 5.5 resulted in increased EIIGlc and EIIMan activity. Unlike the EII component, the HPr concentration in S. mutans Ingbritt varied only twofold (5.5 to 11.4 nmol/mg of protein) despite growth at pH 5.5 with limiting and excess glucose. The HPr concentrations in S. mutans DR0001 and the glucose-PTS-defective mutant DR0001/6 were similar. In a companion study, the soluble components of the PTS (i.e., HPr, EI, and EIIILac) in Streptococcus sobrinus grown on limiting lactose in a chemostat were not influenced significantly by growth at various pHs (7.0 and 5.0) and growth rates (D of 0.1, 0.54, and 0.8 h-1). However, growth on lactose resulted in repression of both EIIGlc and EIIFru, confirming earlier results with batch-grown cells. Thus, the glucose-PTS in some strains of S. mutans is regulated at the level of EII synthesis by certain environmental conditions.

摘要

变形链球菌英布里特株磷酸烯醇丙酮酸

糖磷酸转移酶系统(PTS)中膜结合的糖特异性酶II(EII)组分,在连续培养的各种条件下,于葡萄糖上生长时会受到抑制。与最佳PTS条件(即葡萄糖限制、稀释率[D]为0.1 h⁻¹和pH 7.0)相比,在相同葡萄糖浓度下,于D为0.4 h⁻¹和pH 5.5条件下生长的细胞中,葡萄糖(EIIGlc)和甘露糖(EIIMan)的EII活性降低了24至27倍。α-甲基葡萄糖苷和2-脱氧葡萄糖的EII活性分别降低了6倍和26倍。在过量葡萄糖(即氮限制)条件下生长,这些底物的EII活性会受到26至88倍的抑制。上述低pH、高稀释率和过量葡萄糖的条件也会抑制果糖(EIIFru)的EII活性,但程度较小(2至5倍)。相反,变形链球菌DR0001在D为0.2 h⁻¹和pH 5.5条件下生长会导致EIIGlc和EIIMan活性增加。与EII组分不同,尽管在pH 5.5条件下于有限和过量葡萄糖中生长,变形链球菌英布里特株中的HPr浓度仅变化了两倍(5.5至11.4 nmol/mg蛋白质)。变形链球菌DR0001和葡萄糖-PTS缺陷突变株DR0001/6中的HPr浓度相似。在一项相关研究中,嗜sobrinus链球菌在恒化器中于有限乳糖上生长时,PTS的可溶性组分(即HPr、EI和EIIILac)在不同pH值(7.0和5.0)和生长速率(D为0.1、0.54和0.8 h⁻¹)下生长时未受到显著影响。然而,在乳糖上生长会导致EIIGlc和EIIFru均受到抑制,这证实了早期对分批培养细胞的研究结果。因此,某些变形链球菌菌株中的葡萄糖-PTS在EII合成水平上受到某些环境条件的调控。

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