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Involvement of Streptococcus gordonii Beta-Glucoside Metabolism Systems in Adhesion Biofilm Formation and In Vivo Gene Expression

机译:戈登链球菌β-葡糖苷代谢系统参与粘附生物膜形成和体内基因表达

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摘要

Streptococcus gordonii genes involved in beta-glucoside metabolism are induced in vivo on infected heart valves during experimental endocarditis and in vitro during biofilm formation on saliva-coated hydroxyapatite (sHA). To determine the roles of beta-glucoside metabolism systems in biofilm formation, the loci of these induced genes were analyzed. To confirm the function of genes in each locus, strains were constructed with gene inactivation, deletion, and/or reporter gene fusions. Four novel systems responsible for beta-glucoside metabolism were identified, including three phosphoenolpyruvate-dependent phosphotransferase systems (PTS) and a binding protein-dependent sugar uptake system for metabolizing multiple sugars, including beta-glucosides. Utilization of arbutin and esculin, aryl-beta-glucosides, was defective in some mutants. Esculin and oligochitosaccharides induced genes in one of the three beta-glucoside metabolism PTS and in four other genetic loci. Mutation of genes in any of the four systems affected in vitro adhesion to sHA, biofilm formation on plastic surfaces, and/or growth rate in liquid medium. Therefore, genes associated with beta-glucoside metabolism may regulate S. gordonii in vitro adhesion, biofilm formation, growth, and in vivo colonization.
机译:在实验性心内膜炎期间,在感染的心脏瓣膜上体内诱导涉及β-葡萄糖苷代谢的戈登链球菌基因,而在唾液包被的羟基磷灰石(sHA)上生物膜形成过程中,体外诱导戈氏链球菌基因。为了确定β-葡萄糖苷代谢系统在生物膜形成中的作用,分析了这些诱导基因的基因座。为了证实基因在每个基因座中的功能,构建了具有基因失活,缺失和/或报道基因融合的菌株。确定了四个负责β-葡萄糖苷代谢的新颖系统,包括三个磷酸烯醇丙酮酸依赖性磷酸转移酶系统(PTS)和一个结合蛋白依赖性糖摄取系统,用于代谢多种糖,包括β-葡萄糖苷。在某些突变体中,熊果苷和七叶精,芳基-β-葡萄糖苷的利用存在缺陷。 Esculin和寡壳糖在三个β-葡萄糖苷代谢PTS之一和其他四个遗传基因座中诱导基因。四个系统中任何一个系统中的基因突变都会影响sHA的体外粘附力,塑料表面生物膜的形成和/或液体培养基中的生长速率。因此,与β-葡萄糖苷代谢相关的基因可能在体外粘附,生物膜形成,生长和体内定植中调控戈氏链球菌。

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