Spatafora G A, Sheets M, June R, Luyimbazi D, Howard K, Hulbert R, Barnard D, el Janne M, Hudson M C
Department of Biology, Middlebury College, Middlebury, Vermont 05753, USA.
J Bacteriol. 1999 Apr;181(8):2363-72. doi: 10.1128/JB.181.8.2363-2372.1999.
Intracellular polysaccharides (IPS) are glycogen-like storage polymers which contribute significantly to Streptococcus mutans-induced cariogenesis. We previously identified and cloned a locus from the S. mutans chromosome which is required for the accumulation of IPS. Sequencing of this locus revealed at least four contiguous open reading frames, all of which are preceded by a common promoter region and are transcribed in the same direction. Analysis of the amino acid sequence deduced from the first of these open reading frames (ORF1) revealed domains which are highly conserved among D-alanine-activating enzymes (DltA) in Lactobacillus rhamnosus (formerly Lactobacillus casei) and Bacillus subtilis. The deduced amino acid sequences derived from ORF2, -3, and -4 also exhibit extensive similarity to DltB, -C, and -D, respectively, in these microorganisms. However, Southern hybridization experiments indicate that this operon maps to a locus on the S. mutans chromosome which is separate from the glgP, glgA, and glgD genes, whose products are known mediators of bacterial IPS accumulation. We therefore assigned a new dlt designation to the locus which we had formerly called glg. We maintain that the dlt genes are involved in S. mutans IPS accumulation, however, since they complement a mutation in trans which otherwise renders S. mutans IPS deficient. In this study, we found that expression of the S. mutans dlt genes is growth phase dependent and is modulated by carbohydrates internalized via the phosphoenolpyruvate phosphotransferase system (PTS). We demonstrated that the S. mutans dlt genes are expressed constitutively when non-PTS sugars are provided as the sole source of carbohydrate. Consistent with a role for the PTS in dlt expression is a similar constitutive expression of the dlt genes in an S. mutans PTS mutant grown in a chemically defined medium supplemented with glucose. In summary, these findings support a novel role for the dlt gene products in S. mutans IPS accumulation and suggest that dlt expression in this oral pathogen is subject to complex mechanisms of control imposed by growth phase, dietary carbohydrate, and other factors present in the plaque environment.
细胞内多糖(IPS)是类似糖原的储存聚合物,对变形链球菌诱导的龋齿发生有重要作用。我们之前从变形链球菌染色体中鉴定并克隆了一个位点,该位点是IPS积累所必需的。对该位点的测序揭示了至少四个连续的开放阅读框,所有这些开放阅读框之前都有一个共同的启动子区域,并且转录方向相同。对这些开放阅读框中的第一个(ORF1)推导的氨基酸序列分析揭示了在鼠李糖乳杆菌(原干酪乳杆菌)和枯草芽孢杆菌中的D - 丙氨酸激活酶(DltA)中高度保守的结构域。从ORF2、-3和-4推导的氨基酸序列在这些微生物中也分别与DltB、-C和-D表现出广泛的相似性。然而,Southern杂交实验表明,这个操纵子定位于变形链球菌染色体上与glgP、glgA和glgD基因不同的一个位点,已知这些基因的产物是细菌IPS积累的介质。因此,我们给之前称为glg的位点赋予了一个新的dlt命名。我们坚持认为dlt基因参与变形链球菌IPS的积累,然而,因为它们能互补反式突变,否则会使变形链球菌缺乏IPS。在这项研究中,我们发现变形链球菌dlt基因的表达依赖于生长阶段,并受到通过磷酸烯醇式丙酮酸磷酸转移酶系统(PTS)内化的碳水化合物的调节。我们证明,当非PTS糖作为唯一的碳水化合物来源时,变形链球菌dlt基因组成型表达。与PTS在dlt表达中的作用一致的是,在添加葡萄糖的化学限定培养基中生长的变形链球菌PTS突变体中,dlt基因也有类似的组成型表达。总之,这些发现支持了dlt基因产物在变形链球菌IPS积累中的新作用,并表明这种口腔病原体中dlt的表达受生长阶段、饮食碳水化合物和菌斑环境中存在的其他因素所施加的复杂控制机制的影响。