Division of Constitutive and Regenerative Sciences, University of California School of Dentistry, Los Angeles, CA, USA.
Division of Oral Biology and Medicine, University of California School of Dentistry, Los Angeles, CA, USA.
Microbiologyopen. 2017 Jun;6(3). doi: 10.1002/mbo3.444. Epub 2017 Feb 7.
To successfully colonize the oral cavity, bacteria must directly or indirectly adhere to available oral surfaces. Fusobacterium nucleatum plays an important role in oral biofilm community development due to its broad adherence abilities, serving as a bridge between members of the oral biofilm that cannot directly bind to each other. In our efforts to characterize the molecular mechanisms utilized by F. nucleatum to physically bind to key members of the oral community, we investigated the involvement of F. nucleatum outer membrane proteins in its ability to bind to the pioneer biofilm colonizer, Streptococcus gordonii. Here, we present evidence that in addition to the previously characterized fusobacterial adhesin RadD, the interaction between F. nucleatum ATCC 23726 and S. gordonii V288 involves a second outer membrane protein, which we named coaggregation mediating protein A (CmpA). We also characterized the role of CmpA in dual-species biofilm formation with S. gordonii V288, evaluated growth-phase-dependent as well as biofilm expression profiles of radD and cmpA, and confirmed an important role for CmpA, especially under biofilm growth conditions. Our findings underscore the complex set of specific interactions involved in physical binding and thus community integration of interacting bacterial species. This complex set of interactions could have critical implications for the formation and maturation of the oral biofilms in vivo, and could provide clues to the mechanism behind the distribution of organisms inside the human oral cavity.
为了成功定植口腔,细菌必须直接或间接地黏附于可用的口腔表面。具核梭杆菌由于其广泛的黏附能力,在口腔生物膜群落发展中发挥着重要作用,充当着彼此不能直接结合的口腔生物膜成员之间的桥梁。在我们努力描述具核梭杆菌用于物理结合口腔群落关键成员的分子机制时,我们研究了具核梭杆菌外膜蛋白在其与先驱生物膜定植体链球菌(Streptococcus gordonii)结合能力中的作用。在此,我们提出证据表明,除了先前表征的梭杆菌黏附素 RadD 外,具核梭杆菌 ATCC 23726 与 S. gordonii V288 之间的相互作用还涉及第二种外膜蛋白,我们将其命名为共聚介导蛋白 A(CmpA)。我们还表征了 CmpA 在与 S. gordonii V288 形成双物种生物膜中的作用,评估了 radD 和 cmpA 的生长阶段依赖性和生物膜表达谱,并证实了 CmpA 的重要作用,尤其是在生物膜生长条件下。我们的研究结果强调了参与相互作用细菌种物理结合和群落整合的特定相互作用的复杂集合。这种复杂的相互作用集对于体内口腔生物膜的形成和成熟具有重要意义,并为人类口腔内生物体分布背后的机制提供了线索。