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Treponema denticola chymotrypsin-like proteinase (CTLP) integrates spirochaetes within oral microbial communities

机译:Treponemadenticola chymotrypsin样蛋白酶(CTLP)将螺旋形素纳入口腔微生物群落中

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Treponema denticola is found ubiquitously in the human oral cavity and is mainly associated with bacterial communities implicated in the establishment and development of periodontal disease. The ability to become integrated within biofilm communities is crucial to the growth and survival of oral bacteria, and involves inter-bacterial coaggregation, metabolic cooperation, and synergy against host defences. In this article we show that the chymotrypsin-like proteinase (CTLP), found within a high-molecular-mass complex on the cell surface, mediates adherence of T. denticola to other potential periodontal pathogens, Porphyromonas gingivalis, Fusobacterium nucleatum, Prevotella intermedia and Parvimonas micra. Proteolytic activity per se did not appear to be required for the interactions, and expression of the major outer-sheath protein (Msp) was not necessary, except for binding Parv. micra. Biofilms of densely packed cells and matrix, up to 40 μm in depth, were formed between T. denticola and P. gingivalis on salivary pellicle, with T. denticola cells enriched in the upper layers. Expression of CTLP, but not Msp, was critical for dual-species biofilm formation with P. gingivalis. T. denticola did not form dual-species biofilms with any of the other three periodontal bacterial species under various conditions. Synergy between T. denticola and P. gingivalis was also shown by increased inhibition of blood clotting, which was CTLP-dependent. The results demonstrate the critical role of CTLP in interactions of T. denticola with other oral micro-organisms, leading to synergy in microbial community development and host tissue pathogenesis.
机译:在人口腔中普遍发现葡萄糖胺牙科腔,主要与细菌社区有关,涉及牙周病的建立和发展。在生物膜社区内集成的能力对于口腔​​细菌的生长和生存至关重要,并且涉及细菌间的共grgogation,代谢合作和协同作用。在本文中,我们表明,在细胞表面上的高分子质量络合物中发现的胰凝乳蛋白样蛋白酶(CTLP),介导T.Denticola的粘附到其他潜在的牙周病病原体,卟啉核糖菌,Fusobacterium核心,PREVOTALLA介质和parvimonas micra。除了结合PARV之外,不需要似乎不需要蛋白水解活性,并且不需要表达主要外鞘蛋白(MSP)的表达。 micra。在唾液薄膜上的T.Denticola和P.Gingivalis之间形成密集包装细胞和基质的生物膜,在唾液薄膜上形成甜味囊肿,富含牙科细胞。富含上层。 CTLP的表达,但不是MSP,对于用P.Gingivalis的双种生物膜形成至关重要。 T.Denticola在各种条件下没有任何其他三种牙周菌细菌种类的双种生物膜形成双型生物膜。通过增加抑制血液凝固的血液凝固抑制作用,也显示出牙型菌和P.Gingivalis之间的协同作用。结果证明了CTLP在T.Denticola与其他口腔微生物的相互作用中的关键作用,导致微生物群落的开发和宿主组织发病机构的协同作用。

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