Tsumori H, Kuramitsu H
Department of Oral Biology, State University of New York, Buffalo, USA.
Oral Microbiol Immunol. 1997 Oct;12(5):274-80. doi: 10.1111/j.1399-302x.1997.tb00391.x.
Previous results have indicated that the glucosyltransferase activities of mutans streptococci are required for sucrose-dependent colonization of tooth surfaces. We have constructed mutants of Streptococcus mutans GS5 that are altered in varying combinations of the three gtf genes present in this organism. A quantitative in vitro sucrose-dependent attachment system was used to demonstrate that the inactivation of the gtfC gene drastically reduced adherence to smooth surfaces. By contrast, inactivation of the gtfB gene resulted in a smaller, but significant, reduction in attachment while the gtfD mutant was only marginally affected. Furthermore, production of only the glucosyltransferase C enzyme allowed for attachment although at reduced levels compared to the wild-type organism. The results from reintroduction of single copies of each of the gtf genes into a mutant of strain GS5 lacking glucosyltransferase activity also demonstrated the crucial role of the glucosyltransferase C enzyme in colonization. These results suggest a unique role for the glucosyltransferase C enzyme in the sucrose-dependent colonization of tooth surfaces by S. mutans strains.
先前的研究结果表明,变形链球菌的葡糖基转移酶活性是蔗糖依赖型牙面定植所必需的。我们构建了变形链球菌GS5的突变体,该菌株中存在的三个gtf基因以不同组合发生了改变。使用定量体外蔗糖依赖型附着系统证明,gtfC基因的失活极大地降低了对光滑表面的黏附。相比之下,gtfB基因的失活导致附着减少,虽然幅度较小但很显著,而gtfD突变体仅受到轻微影响。此外,仅产生葡糖基转移酶C酶时也能发生附着,不过与野生型菌株相比水平有所降低。将每个gtf基因的单拷贝重新导入缺乏葡糖基转移酶活性的GS5菌株突变体的结果也证明了葡糖基转移酶C酶在定植中的关键作用。这些结果表明,葡糖基转移酶C酶在变形链球菌菌株对牙面的蔗糖依赖型定植中具有独特作用。