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The Periodontal Pathogen Porphyromonas gingivalis Induces Expression of Transposases and Cell Death of Streptococcus mitis in a Biofilm Model

机译:牙周病原体牙龈卟啉单胞菌在生物膜模型中诱导转座酶的表达和链球菌的细胞死亡

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摘要

Oral microbial communities are extremely complex biofilms with high numbers of bacterial species interacting with each other (and the host) to maintain homeostasis of the system. Disturbance in the oral microbiome homeostasis can lead to either caries or periodontitis, two of the most common human diseases. Periodontitis is a polymicrobial disease caused by the coordinated action of a complex microbial community, which results in inflammation of tissues that support the teeth. It is the most common cause of tooth loss among adults in the United States, and recent studies have suggested that it may increase the risk for systemic conditions such as cardiovascular diseases. In a recent series of papers, Hajishengallis and coworkers proposed the idea of the “keystone-pathogen” where low-abundance microbial pathogens (Porphyromonas gingivalis) can orchestrate inflammatory disease by turning a benign microbial community into a dysbiotic one. The exact mechanisms by which these pathogens reorganize the healthy oral microbiome are still unknown. In the present manuscript, we present results demonstrating that P. gingivalis induces S. mitis death and DNA fragmentation in an in vitro biofilm system. Moreover, we report here the induction of expression of multiple transposases in a Streptococcus mitis biofilm when the periodontopathogen P. gingivalis is present. Based on these results, we hypothesize that P. gingivalis induces S. mitis cell death by an unknown mechanism, shaping the oral microbiome to its advantage.
机译:口腔微生物群落是极其复杂的生物膜,具有大量细菌种类,彼此(和宿主)相互作用以维持系统的稳态。口腔微生物组稳态的紊乱可导致龋齿或牙周炎,这是人类最常见的两种疾病。牙周炎是由复杂的微生物群落的协同作用引起的多微生物疾病,导致支持牙齿的组织发炎。它是美国成年人中最常见的牙齿脱落原因,最近的研究表明,它可能会增加罹患心血管疾病等全身性疾病的风险。在最近的一系列论文中,Hajishengallis及其同事提出了“基石病原体”的想法,其中低丰度微生物病原体(牙龈卟啉单胞菌)可以通过将良性微生物群落转变为营养不良的菌群来策划炎症性疾病。这些病原体重组健康口腔微生物组的确切机制仍然未知。在本手稿中,我们提供的结果表明,牙龈卟啉单胞菌在体外生物膜系统中诱导链球菌死亡和DNA片段化。此外,当牙周病原体牙龈卟啉单胞菌存在时,我们在这里报告了在微生物链球菌生物膜中多种转座酶表达的诱导。根据这些结果,我们假设牙龈卟啉单胞菌通过未知机制诱导链球菌的死亡,从而使口腔微生物组发挥其优势。

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