Rickard Alexander H, Palmer Robert J, Blehert David S, Campagna Shawn R, Semmelhack Martin F, Egland Paul G, Bassler Bonnie L, Kolenbrander Paul E
National Institutes of Health, NIDCR, Bethesda, MD 20892, USA.
Mol Microbiol. 2006 Jun;60(6):1446-56. doi: 10.1111/j.1365-2958.2006.05202.x.
4,5-Dihydroxy-2,3-pentanedione (DPD), a product of the LuxS enzyme in the catabolism of S-ribosylhomocysteine, spontaneously cyclizes to form autoinducer 2 (AI-2). AI-2 is proposed to be a universal signal molecule mediating interspecies communication among bacteria. We show that mutualistic and abundant biofilm growth in flowing saliva of two human oral commensal bacteria, Actinomyces naeslundii T14V and Streptococcus oralis 34, is dependent upon production of AI-2 by S. oralis 34. A luxS mutant of S. oralis 34 was constructed which did not produce AI-2. Unlike wild-type dual-species biofilms, A. naeslundii T14V and an S. oralis 34 luxS mutant did not exhibit mutualism and generated only sparse biofilms which contained a 10-fold lower biomass of each species. Restoration of AI-2 levels by genetic or chemical (synthetic AI-2 in the form of DPD) complementation re-established the mutualistic growth and high biomass characteristic for the wild-type dual-species biofilm. Furthermore, an optimal concentration of DPD was determined, above and below which biofilm formation was suppressed. The optimal concentration was 100-fold lower than the detection limit of the currently accepted AI-2 assay. Thus, AI-2 acts as an interspecies signal and its concentration is critical for mutualism between two species of oral bacteria grown under conditions that are representative of the human oral cavity.
4,5-二羟基-2,3-戊二酮(DPD)是S-核糖基高半胱氨酸分解代谢过程中LuxS酶的产物,可自发环化形成自诱导物2(AI-2)。据推测,AI-2是一种介导细菌间种间通讯的通用信号分子。我们发现,两种人类口腔共生菌——内氏放线菌T14V和口腔链球菌34在流动唾液中形成互利且丰富的生物膜生长,依赖于口腔链球菌34产生AI-2。构建了一株不产生AI-2的口腔链球菌34 luxS突变体。与野生型双物种生物膜不同,内氏放线菌T14V和口腔链球菌34 luxS突变体并未表现出互利共生,仅形成稀疏的生物膜,其中每个物种的生物量降低了10倍。通过基因互补或化学互补(以DPD形式的合成AI-2)恢复AI-2水平,可重新建立野生型双物种生物膜互利生长和高生物量的特征。此外,还确定了DPD的最佳浓度,高于或低于该浓度生物膜形成均受到抑制。该最佳浓度比目前公认的AI-2检测方法的检测限低100倍。因此,AI-2作为一种种间信号,其浓度对于在代表人类口腔环境的条件下生长的两种口腔细菌之间的互利共生至关重要。