Department of Oral Health and Diagnostic Sciences, University of Connecticut School of Dental Medicine, Farmington, CT, USA.
Department of Prosthodontics and Periodontology, Piracicaba Dental School, University of Campinas (UNICAMP), Piracicaba, São Paulo, Brazil.
ISME J. 2020 May;14(5):1207-1222. doi: 10.1038/s41396-020-0608-4. Epub 2020 Feb 10.
Streptococcal glucosyltransferases (Gtf) synthesize α-glucan exopolymers which contribute to biofilm matrix. Streptococcus oralis interacts with the opportunistic pathogen Candida albicans to form hypervirulent biofilms. S. oralis 34 has a single gtf gene (gtfR). However, the role of gtfR in single and mixed species biofilms with C. albicans has never been examined. A gtfR deletion mutant, purified GtfR, and recombinant GtfR glucan-binding domain were tested in single and mixed biofilms on different substrata in vitro. A mouse oral infection model was also used. We found that in single species biofilms growing with sucrose on abiotic surfaces S. oralis gtfR increased biofilm matrix, but not bacterial biomass. In biofilms with C. albicans, S. oralis encoding gtfR showed increased bacterial biomass on all surfaces. C. albicans had a positive effect on α-glucan synthesis, and α-glucans increased C. albicans accretion on abiotic surfaces. In single and mixed infection of mice receiving sucrose S. oralis gtfR enhanced mucosal burdens. However, sucrose had a negative impact on C. albicans burdens and reduced S. oralis burdens in co-infected mice. Our data provide new insights on the GtfR-mediated interactions between the two organisms and the influence of biofilm substratum and the mucosal environment on these interactions.
链球菌葡糖基转移酶(Gtf)合成α-葡聚糖外聚物,有助于生物膜基质的形成。口腔链球菌与机会性病原体白色念珠菌相互作用,形成毒性更强的生物膜。口腔链球菌 34 只有一个 gtf 基因(gtfR)。然而,gtfR 在与白色念珠菌形成的单一和混合物种生物膜中的作用从未被研究过。在体外不同基质上的单一和混合生物膜中,对 gtfR 缺失突变体、纯化的 GtfR 和重组 GtfR 葡聚糖结合域进行了测试。还使用了小鼠口腔感染模型。我们发现,在含有蔗糖的单一物种生物膜中,在非生物表面上,S. oralis gtfR 增加了生物膜基质,但不增加细菌生物量。在与白色念珠菌混合的生物膜中,编码 gtfR 的 S. oralis 在所有表面上均显示出增加的细菌生物量。白色念珠菌对α-葡聚糖合成有积极影响,α-葡聚糖增加了白色念珠菌在非生物表面上的积累。在接受蔗糖的单感染和混合感染的小鼠中,S. oralis gtfR 增强了黏膜负荷。然而,蔗糖对白色念珠菌负荷有负面影响,并降低了混合感染小鼠中 S. oralis 的负荷。我们的数据为这两种生物体之间的 GtfR 介导的相互作用以及生物膜基质和黏膜环境对这些相互作用的影响提供了新的见解。