Department of Oral Biology, Faculty of Dentistry, University of Oslo, Oslo, Norway.
Mol Oral Microbiol. 2012 Apr;27(2):95-108. doi: 10.1111/j.2041-1014.2011.00635.x. Epub 2011 Dec 24.
The polysaccharide capsule of Streptococcus pneumoniae is a hallmark for virulence in humans. In its close relative Streptococcus mitis, a common human commensal, analysis of the sequenced genomes of six strains revealed the presence of a putative capsule locus in four of them. We constructed an isogenic S. mitis mutant from the type strain that lacked the 19 open reading frames in the capsule locus (Δcps mutant), using a deletion strategy similar to previous capsule functional studies in S. pneumoniae. Transmission electron microscopy and atomic force microscopy revealed a capsule-like structure in the S. mitis type strain that was absent or reduced in the Δcps mutant. Since S. mitis are predominant oral colonizers of tooth surfaces, we addressed the relevance of the capsule locus for the S. mitis overall surface properties, autoaggregation and biofilm formation. The capsule deletion resulted in a mutant with approximately two-fold increase in hydrophobicity. Binding to the Stains-all cationic dye was reduced by 40%, suggesting a reduction in the overall negative surface charge of the mutant. The mutant exhibited also increased autoaggregation in coaggregation buffer, and up to six-fold increase in biofilm levels. The results suggested that the capsule locus is associated with production of a capsule-like structure in S. mitis and indicated that the S. mitis capsule-like structure may confer surface attributes similar to those associated with the capsule in S. pneumoniae.
肺炎链球菌的多糖荚膜是其在人类中具有毒力的标志。在其密切相关的人类共生菌草绿色链球菌中,对六个菌株的测序基因组进行分析显示,其中四个菌株存在一个假定的荚膜基因座。我们使用类似于之前在肺炎链球菌中进行的荚膜功能研究的缺失策略,从标准菌株中构建了一个缺乏荚膜基因座中 19 个开放阅读框的同源同基因草绿色链球菌突变体(Δcps 突变体)。透射电子显微镜和原子力显微镜显示,草绿色链球菌标准菌株存在荚膜样结构,而在Δcps 突变体中则不存在或减少。由于草绿色链球菌是牙齿表面的主要口腔定植菌,我们研究了荚膜基因座与草绿色链球菌整体表面特性、自动聚集和生物膜形成的相关性。荚膜缺失导致突变体的疏水性增加约两倍。与 Stains-all 阳离子染料的结合减少了 40%,表明突变体的总负表面电荷减少。突变体在共聚集缓冲液中也表现出更高的自动聚集性,生物膜水平增加了六倍。结果表明,荚膜基因座与草绿色链球菌产生荚膜样结构有关,并表明草绿色链球菌荚膜样结构可能赋予与肺炎链球菌荚膜相关的表面特性。