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Inhibition of polysaccharide synthesis by the sinR orthologue PGN_0088 is indirectly associated with the penetration of Porphyromonas gingivalis biofilms by macrolide antibiotics

机译:sinR直向同源物PGN_0088对多糖合成的抑制与大环内酯类抗生素对牙龈卟啉单胞菌生物膜的渗透间接相关

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Microbes commonly adhere to surfaces, aggregate in self-produced extracellular polymeric substances (EPS) and live in biofilms. Periodontitis is a serious oral infection that is initiated by the formation of biofilms by Porphyromonas gingivalis. EPS act as a barrier that protects biofilm-forming cells against sources of stress, including those induced by host immune cells and antimicrobial agents. Therefore, drugs intended to kill such micro-organisms cannot be used for the treatment of biofilm infections. Our previous studies revealed that subminimal inhibitory concentrations (subMIC) of two macrolide antibiotics (azithromycin, AZM and erythromycin, ERY) reduced P. gingivalis biofilms. Furthermore, we demonstrated that the Bacillus subtilis sinR orthologue (PGN_0088) inhibits the synthesis of carbohydrates that are components of EPS in P. gingivalis biofilms. Here, we constructed a novel sinR mutant from P. gingivalis ATCC 33277 and reveal that the increased abundance of carbohydrate in EPS of the mutant led to a reduced infiltration rate of AZM and ERY through EPS, and consequently elevated biofilm resistance to these macrolides. Detailed elucidation of the interaction between the product of the sinR gene and EPS will assist in the development of novel approaches that target EPS to prevent and inhibit the formation of biofilms.
机译:微生物通常粘附在表面上,聚集在自身产生的细胞外聚合物质(EPS)中,并存在于生物膜中。牙周炎是一种严重的口腔感染,由牙龈卟啉单胞菌形成生物膜引起。 EPS充当屏障,保护生物膜形成细胞免受压力源的伤害,包括宿主免疫细胞和抗菌剂诱导的压力。因此,旨在杀死此类微生物的药物不能用于治疗生物膜感染。我们以前的研究表明,两种大环内酯类抗生素(阿奇霉素,AZM和红霉素,ERY)的抑菌浓度(subMIC)最低,可降低牙龈卟啉单胞菌的生物膜。此外,我们证明了枯草芽孢杆菌sinR直系同源物(PGN_0088)抑制了牙龈卟啉单胞菌生物膜中EPS成分碳水化合物的合成。在这里,我们从牙龈卟啉单胞菌ATCC 33277中构建了一个新的sinR突变体,并揭示了该突变体EPS中碳水化合物含量的增加导致AZM和ERY通过EPS的浸润率降低,因此对这些大环内酯类药物的生物膜抗性提高。对sinR基因产物与EPS之间相互作用的详细阐明将有助于开发靶向EPS的新方法,以预防和抑制生物膜的形成。

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