Gan Yu, Meng Liu-yan, Fan Ming-wen, Peng Bin, Chen Zhi, Bian Zhuan
Key Laboratory of Oral Biomedical Engineering of Ministry of Education, School of Stomatology, Wuhan University, Wuhan 430079, China.
Zhonghua Kou Qiang Yi Xue Za Zhi. 2006 Jan;41(1):33-6.
To determine the physicochemical properties of the mutanase of Trichoderma harzianum isolated from China and to study the influence of mutanase on the adherence of oral Streptococci and the structure of oral biofilms.
Six fungal strains belonging to Trichoderma were tested for mutanase production in the same cultural condition, the strain producing the highest mutanase activity was studied further and the pH and temperature optimum of the enzyme was determined. The RT-PCR method was used to obtain the gene coding for mutanase and the product was cloned to pMD18-T simple vector for sequencing. Inhibition effects of mutanase on the adherence of Streptococcus sobrinus OMZ176, Streptococcus sobrinus 6715, Streptococcus mutans MT8148 were studied by adherence test. The optical sectioning of biofilms with or without mutanase supplementation were analyzed by confocal laser scanning microscopy (CLSM).
The highest enzymatic activity was achieved by Trichoderma harzianum Th1, the maximum activity was at pH 5.5 and at 40 degrees C. The nucleotide sequence was 92% homology with that of a known gene coding a mutanase (GenBank accession No. AJ243799). The adherence of Streptococcus sobrinus OMZ176, Streptococcus sobrinus 6715, Streptococcus mutans MT8148 was significantly inhibited by mutanase. Compared with control, the biofilms with mutanase supplementation had lower height and sparser structure.
The mutanase from Trichoderma harzianum Th1 can inhibit the adherence of oral Streptococci and had an influence on the structure of oral biofilms.
测定从中国分离得到的哈茨木霉变聚糖酶的理化性质,并研究变聚糖酶对口腔链球菌黏附及口腔生物膜结构的影响。
在相同培养条件下对6株木霉属真菌进行变聚糖酶产生情况检测,对产酶活性最高的菌株进行进一步研究,测定该酶的最适pH和温度。采用RT-PCR方法获得变聚糖酶编码基因,并将产物克隆至pMD18-T 载体进行测序。通过黏附试验研究变聚糖酶对远缘链球菌OMZ176、远缘链球菌6715、变形链球菌MT8148黏附的抑制作用。利用共聚焦激光扫描显微镜(CLSM)分析添加或不添加变聚糖酶的生物膜的光学切片。
哈茨木霉Th1产酶活性最高,最高活性出现在pH 5.5和40℃条件下。该核苷酸序列与已知变聚糖酶编码基因(GenBank登录号:AJ243799)的同源性为92%。变聚糖酶显著抑制远缘链球菌OMZ176、远缘链球菌6715、变形链球菌MT8148的黏附。与对照组相比,添加变聚糖酶的生物膜高度更低,结构更稀疏。
哈茨木霉Th1的变聚糖酶可抑制口腔链球菌的黏附,并对口腔生物膜结构产生影响。