Walker Glenn V, Heng Nicholas C K, Carne Alan, Tagg John R, Wescombe Philip A
Department of Microbiology and Immunology, University of Otago, Dunedin, New Zealand.
Sir John Walsh Research Institute (Faculty of Dentistry), University of Otago, Dunedin, New Zealand.
Microbiology (Reading). 2016 Mar;162(3):476-486. doi: 10.1099/mic.0.000237. Epub 2016 Jan 7.
Dental caries is an infectious disease that is continuing to increase in prevalence, reducing the quality of life for millions worldwide as well as causing considerable expense, with an estimated US$108 billion spent on dental care in the USA each year. Oral probiotics are now being investigated to determine whether they could play a role in the prevention and treatment of this disease. Streptococcus salivarius strain JH is a potential probiotic candidate that produces multiple proteinaceous antimicrobials (bacteriocins), the inhibitory spectrum of which includes Streptococcus mutans, one of the principal causative agents of dental caries. The genome of strain JH has previously been shown to contain the biosynthetic loci for the bacteriocins salivaricin A3, streptin and streptococcin SA-FF22. Here we show that strain JH also produces salivaricin E, a 32 aa lantibiotic with a mass of 3565.9 Da, which is responsible for the inhibition of S. mutans growth. In addition, strain JH was shown to produce dextranase, an enzyme that hydrolyses (1 → 6)-α-D-glucosidic linkages, at levels higher than any other S. salivarius tested. In vitro testing showed that partial hydrolysis of the exopolymeric substances of S. mutans, using strain JH dextranase, improved the anti-S. mutans inhibitory activity of the lytic bacteriocin, zoocin A. The multiple bacteriocin and dextranase activities of strain JH support its candidature for development as an oral probiotic.
龋齿是一种感染性疾病,其患病率持续上升,降低了全球数百万人的生活质量,同时造成了相当大的费用支出,据估计,美国每年在牙科护理上的花费为1080亿美元。目前正在研究口腔益生菌,以确定它们是否能在这种疾病的预防和治疗中发挥作用。唾液链球菌JH菌株是一种潜在的益生菌候选菌株,它能产生多种蛋白质类抗菌物质(细菌素),其抑制谱包括变形链球菌,变形链球菌是龋齿的主要致病因子之一。此前已证明JH菌株的基因组包含细菌素唾液乳杆菌素A3、链菌素和链球菌素SA-FF22的生物合成基因座。在此我们表明,JH菌株还产生唾液乳杆菌素E,这是一种由32个氨基酸组成的羊毛硫抗生素,质量为3565.9 Da,它负责抑制变形链球菌的生长。此外,JH菌株被证明能产生葡聚糖酶,一种水解(1→6)-α-D-糖苷键的酶,其产生水平高于所测试的任何其他唾液链球菌。体外测试表明,使用JH菌株的葡聚糖酶对变形链球菌的胞外聚合物进行部分水解,可提高溶菌细菌素——动物菌素A对变形链球菌的抑制活性。JH菌株的多种细菌素和葡聚糖酶活性支持其作为口腔益生菌开发的候选资格。