Ng J, Ng L K, Mayrand D, Dillon J A
Department of Biology, University of Ottawa, ON, Canada.
Can J Microbiol. 1998 Mar;44(3):303-6.
One hundred Peptostreptococcus isolates from five species were assessed for their ability to hydrolyze gelatin. Most Peptostreptococcus magnus (95.8%) and Peptostreptococcus micros isolates (79.0%) hydrolyzed gelatin in contrast to Peptostreptococcus asaccharolyticus (8.0%), Peptostreptococcus anaerobius (10.0%), and Peptostreptococcus prevotii isolates (16.7%). Gelatin hydrolysis in Peptostreptococcus magnus and Peptostreptococcus micros isolates correlated (r = 0.80; P = 0.0019) with more aminopeptidases produced than Peptostreptococcus asaccharolyticus, Peptostreptococcus anaerobius, or Peptostreptococcus prevotii. The five species were further classified into three groups using the extended Tukey test (P < 0.0001) based on the mean percentage of aminopeptidases produced by each species with Peptostreptococcus magnus and Peptostreptococcus micros belonging to group I, Peptostreptococcus asaccharolyticus and Peptostreptococcus prevotii belonging to group II, and Peptostreptococcus anaerobius forming group III. An analysis of possible proteolytic activity of four selected Peptostreptococcus magnus isolates indicated that only 5 of 11 substrates were hydrolyzed as compared to a control isolate of Porphyromonas gingivalis W83, which had a strong proteolytic profile. Therefore, gelatin hydrolysis by Peptostreptococcus spp., in particular Peptostreptococcus magnus and Peptostreptococcus micros, is probably due to a variety of aminopeptidases rather than proteinases.
对从五个菌种中分离出的100株消化链球菌进行了明胶水解能力评估。与不解糖消化链球菌(8.0%)、厌氧消化链球菌(10.0%)和普氏消化链球菌分离株(16.7%)相比,大多数大消化链球菌(95.8%)和微小消化链球菌分离株(79.0%)能水解明胶。大消化链球菌和微小消化链球菌分离株中的明胶水解与产生的氨肽酶比不解糖消化链球菌、厌氧消化链球菌或普氏消化链球菌更多相关(r = 0.80;P = 0.0019)。根据每个菌种产生氨肽酶的平均百分比,使用扩展的Tukey检验(P < 0.0001)将这五个菌种进一步分为三组,大消化链球菌和微小消化链球菌属于第一组,不解糖消化链球菌和普氏消化链球菌属于第二组,厌氧消化链球菌形成第三组。对四株选定的大消化链球菌分离株可能的蛋白水解活性分析表明,与具有强大蛋白水解谱的牙龈卟啉单胞菌W83对照分离株相比,11种底物中只有5种被水解。因此,消化链球菌属,特别是大消化链球菌和微小消化链球菌的明胶水解可能是由于多种氨肽酶而非蛋白酶。