Kreth Jens, Merritt Justin, Shi Wenyuan, Qi Fengxia
Department of Oral Biology and Medicine, UCLA School of Dentistry, P.O. Box 951668, Los Angeles, CA 90095-1668, USA.
Mol Microbiol. 2005 Jul;57(2):392-404. doi: 10.1111/j.1365-2958.2005.04695.x.
It is important to ensure DNA availability when bacterial cells develop competence. Previous studies in Streptococcus pneumoniae demonstrated that the competence-stimulating peptide (CSP) induced autolysin production and cell lysis of its own non-competent cells, suggesting a possible active mechanism to secure a homologous DNA pool for uptake and recombination. In this study, we found that in Streptococcus mutans CSP induced co-ordinated expression of competence and mutacin production genes. This mutacin (mutacin IV) is a non-lantibiotic bacteriocin which kills closely related Streptococcal species such as S. gordonii. In mixed cultures of S. mutans and S. gordonii harbouring a shuttle plasmid, plasmid DNA transfer from S. gordonii to S. mutans was observed in a CSP and mutacin IV-dependent manner. Further analysis demonstrated an increased DNA release from S. gordonii upon addition of the partially purified mutacin IV extract. On the basis of these findings, we propose that Streptococcus mutans, which resides in a multispecies oral biofilm, may utilize the competence-induced bacteriocin production to acquire transforming DNA from other species living in the same ecological niche. This hypothesis is also consistent with a well-known phenomenon that a large genomic diversity exists among different S. mutans strains. This diversity may have resulted from extensive horizontal gene transfer.
当细菌细胞发展出感受态时,确保DNA的可获得性很重要。先前对肺炎链球菌的研究表明,感受态刺激肽(CSP)可诱导自身非感受态细胞产生自溶素并导致细胞裂解,这表明存在一种可能的主动机制来确保有同源DNA库以供摄取和重组。在本研究中,我们发现变形链球菌中的CSP可诱导感受态和变链菌素产生基因的协同表达。这种变链菌素(变链菌素IV)是一种非羊毛硫抗生素细菌素,可杀死密切相关的链球菌物种,如戈登链球菌。在含有穿梭质粒的变形链球菌和戈登链球菌的混合培养物中,观察到质粒DNA以CSP和变链菌素IV依赖的方式从戈登链球菌转移到变形链球菌。进一步分析表明,添加部分纯化的变链菌素IV提取物后,戈登链球菌的DNA释放增加。基于这些发现,我们提出,存在于多物种口腔生物膜中的变形链球菌可能利用感受态诱导的细菌素产生从生活在同一生态位的其他物种获取转化DNA。这一假设也与一个众所周知的现象一致,即不同变形链球菌菌株之间存在很大的基因组多样性。这种多样性可能是由广泛的水平基因转移导致的。