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A Highly Arginolytic Streptococcus Species That Potently Antagonizes Streptococcus mutans

机译:高度拮抗变形链球菌的高度精解链球菌种。

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摘要

The ability of certain oral biofilm bacteria to moderate pH through arginine metabolism by the arginine deiminase system (ADS) is a deterrent to the development of dental caries. Here, we characterize a novel Streptococcus strain, designated strain A12, isolated from supragingival dental plaque of a caries-free individual. A12 not only expressed the ADS pathway at high levels under a variety of conditions but also effectively inhibited growth and two intercellular signaling pathways of the dental caries pathogen Streptococcus mutans. A12 produced copious amounts of H2O2 via the pyruvate oxidase enzyme that were sufficient to arrest the growth of S. mutans. A12 also produced a protease similar to challisin (Sgc) of Streptococcus gordonii that was able to block the competence-stimulating peptide (CSP)–ComDE signaling system, which is essential for bacteriocin production by S. mutans. Wild-type A12, but not an sgc mutant derivative, could protect the sensitive indicator strain Streptococcus sanguinis SK150 from killing by the bacteriocins of S. mutans. A12, but not S. gordonii, could also block the XIP (comX-inducing peptide) signaling pathway, which is the proximal regulator of genetic competence in S. mutans, but Sgc was not required for this activity. The complete genome sequence of A12 was determined, and phylogenomic analyses compared A12 to streptococcal reference genomes. A12 was most similar to Streptococcus australis and Streptococcus parasanguinis but sufficiently different that it may represent a new species. A12-like organisms may play crucial roles in the promotion of stable, health-associated oral biofilm communities by moderating plaque pH and interfering with the growth and virulence of caries pathogens.
机译:某些口腔生物被膜细菌通过精氨酸脱亚氨酶系统(ADS)通过精氨酸代谢调节pH的能力阻碍了龋齿的发展。在这里,我们表征了一种新型的链球菌菌株,命名为菌株A12,从无龋个体的龈上牙菌斑中分离出来。 A12不仅在各种条件下都高水平表达了ADS途径,而且还有效抑制了龋齿病原体变形链球菌的生长和两个细胞间信号传导途径。 A12通过丙酮酸氧化酶产生了大量的H2O2,足以阻止变形链球菌的生长。 A12还产生一种类似于戈登链球菌的鞭毛菌素(Sgc)的蛋白酶,该蛋白酶能够阻断能力刺激肽(CSP)-ComDE信号传导系统,这对于变形链球菌产生细菌素至关重要。野生型A12,但不是sgc突变体衍生物,可以保护敏感指示菌株血链球菌SK150免受变形链球菌细菌素的杀伤。 A12,但不是戈登氏链球菌,也可以阻断XIP(comX诱导肽)信号通路,这是变形链球菌遗传能力的近端调节物,但该活性并非必需Sgc。确定了A12的完整基因组序列,并将系统生物学分析将A12与链球菌参考基因组进行了比较。 A12与澳大利亚链球菌和副血链球菌最相似,但差异很大,可能代表一个新物种。 A12样生物可通过调节噬菌斑pH值并干扰龋齿病原体的生长和毒力,在促进稳定的,健康相关的口腔生物膜群落中发挥关键作用。

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