Ellen R P, Lépine G, Nghiem P M
Department of Periodontics, University of Toronto, Faculty of Dentistry, ON, Canada.
Adv Dent Res. 1997 Apr;11(1):33-42. doi: 10.1177/08959374970110011401.
Adhesion to adsorbed pellicles and interspecies co-adhesion to form plaque biofilms involve selective interactions of bacterial adhesins with specific receptors. Our laboratory has devised in vitro assays for co-adhesion between Actinomyces naeslundii and Streptococcus oralis or Porphyromonas gingivalis on saliva-coated mineral and hexadecane droplet substrata. P. gingivalis structures significant for co-adhesion with A. naeslundii include surface vesicles and fimbriae. A family of arginine-specific cysteine proteinases in vesicles may be involved in adherence to bacteria, to host cells, and to matrix proteins. New research from several laboratories has found that such proteinases are processed from genes encoding polyproteins containing both proteinase and hemagglutinin domains. In addition to enzyme-substrate recognition, bacterial adhesion is often determined by specific protein-peptide and lectincarbohydrate recognition. A. naeslundii--salivary prolinerich protein, S. gordonii--salivary alpha-amylase, and Treponema denticola--matrix protein recognition are examples of the former. Co-adhesion of A. naeslundii and S. oralis is an example of the latter. Lactose can selectively desorb A. naeslundii cells from mixed biofilms with S. oralis, a demonstration of the significance of specificity. Although non-specific forces are probably secondary to stereochemical fit in determining the selective range of surfaces that bacteria have evolved to recognize and bind, they probably help stabilize non-covalent bonds within aligned, complementary domains.
细菌黏附素与特定受体的选择性相互作用参与了对吸附获得性膜的黏附以及种间共黏附以形成菌斑生物膜。我们实验室设计了体外试验,用于研究内氏放线菌与口腔链球菌或牙龈卟啉单胞菌在唾液包被的矿物质和十六烷微滴基质上的共黏附。牙龈卟啉单胞菌中对与内氏放线菌共黏附起重要作用的结构包括表面囊泡和菌毛。囊泡中的一类精氨酸特异性半胱氨酸蛋白酶可能参与对细菌、宿主细胞和基质蛋白的黏附。几个实验室的新研究发现,这类蛋白酶是由编码同时含有蛋白酶和血凝素结构域的多聚蛋白的基因加工而来。除了酶-底物识别外,细菌黏附通常还由特定的蛋白质-肽和凝集素-碳水化合物识别决定。前者的例子有内氏放线菌-唾液富含脯氨酸蛋白、戈登链球菌-唾液α-淀粉酶和齿垢密螺旋体-基质蛋白识别。内氏放线菌和口腔链球菌的共黏附则是后者的例子。乳糖可以选择性地从与口腔链球菌的混合生物膜中解吸内氏放线菌细胞,这证明了特异性的重要性。尽管在决定细菌进化所识别和结合的表面选择性范围时,非特异性力可能仅次于立体化学契合,但它们可能有助于稳定排列的互补结构域内的非共价键。