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Interactions between Oral Bacteria: Inhibition of Streptococcus mutans Bacteriocin Production by Streptococcus gordonii

机译:口腔细菌之间的相互作用:戈登链球菌对变形链球菌细菌素产生的抑制作用

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摘要

Streptococcus mutans has been recognized as an important etiological agent in human dental caries. Some strains of S. mutans also produce bacteriocins. In this study, we sought to demonstrate that bacteriocin production by S. mutans strains GS5 and BM71 was mediated by quorum sensing, which is dependent on a competence-stimulating peptide (CSP) signaling system encoded by the com genes. We also demonstrated that interactions with some other oral streptococci interfered with S. mutans bacteriocin production both in broth and in biofilms. The inhibition of S. mutans bacteriocin production by oral bacteria was stronger in biofilms than in broth. Using transposon Tn916 mutagenesis, we identified a gene (sgc; named for Streptococcus gordonii challisin) responsible for the inhibition of S. mutans bacteriocin production by S. gordonii Challis. Interruption of the sgc gene in S. gordonii Challis resulted in attenuated inhibition of S. mutans bacteriocin production. The supernatant fluids from the sgc mutant did not inactivate the exogenous S. mutans CSP as did those from the parent strain Challis. S. gordonii Challis did not inactivate bacteriocin produced by S. mutans GS5. Because S. mutans uses quorum sensing to regulate virulence, strategies designed to interfere with these signaling systems may have broad applicability for biological control of this caries-causing organism.
机译:变形链球菌已被认为是人类龋齿的重要病因。一些变形链球菌菌株还产生细菌素。在这项研究中,我们试图证明变形链球菌菌株GS5和BM71的细菌素生产是由群体感应介导的,群体感应依赖于com基因编码的能力刺激肽(CSP)信号传导系统。我们还证明了与其他口服链球菌的相互作用会干扰肉汤和生物膜中的变形链球菌细菌素的产生。口腔细菌对变形链球菌细菌素产生的抑制作用在生物膜中要强于肉汤。使用转座子Tn916诱变,我们确定了一个基因(sgc;命名为戈登链球菌查尔菌素),该基因负责抑制沙门氏菌对变形链球菌细菌素的产生。 gordonii Challis中sgc基因的中断导致变形链球菌细菌素产生的抑制作用减弱。 sgc突变体的上清液不会像亲本菌株Challis一样使外源变异链球菌CSP失活。 S。戈登氏菌Challis不能灭活 S产生的细菌素。变形 GS5。因为 S。 mutans 使用群体感应来调节毒力,旨在干扰这些信号系统的策略可能对于这种引起龋齿的生物的生物控制具有广泛的适用性。

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