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变形链球菌及一种细胞外多糖突变体中细胞外葡聚糖与黏附性和致龋性之间关系的生化研究

Biochemical study of the relationship of extracellular glucan to adherence and cariogenicity in Streptococcus mutans and an extracellular polysaccharide mutant.

作者信息

Johnson M C, Bozzola J J, Shechmeister I L, Shklair I L

出版信息

J Bacteriol. 1977 Jan;129(1):351-7. doi: 10.1128/jb.129.1.351-357.1977.

Abstract

A mutant of Streptococcus mutans, GS-5, which differed in extracellular polysaccharide (EPS) produced from sucrose, was used to study the role of EPS in the production of dental caries. The mutant proved to be identical to the parent strain in sugar fermentation, growth rate, and serotype. Strain GS-5 synthesized an EPS, which in electron micrographs appeared to be of fibrillar structure, whereas the mutant produced no fibrillar material but only a globular EPS. Analysis of the EPS revealed that about 30% of the glucose units in the GS-5 polymer carried (1-3)-like bonds either as branch points or as part of the linear backbone and that the mutant material contained only about 3% of these linkages. When grown in sucrose broth, the proportion of the mutant culture adherent to the glass vessel was dramatically less than that of the parent strain. Caries scores produced in conventional rats by the mutant were significantly lower than those obtained with the parent strain. Since the only difference discovered between strain GS-5 and the mutant was the inability of the mutant to synthesize either a fibrillar EPS or an EPS with more than about 3% (1-3)-like linkages, it was concluded that the fibrillar EPS of strain GS-5 contained about 30% (1-3)-like linkages and was necessary for adherence of the bacteria to surfaces and for production of dental caries in test animals.

摘要

变形链球菌的一个突变体GS-5,其蔗糖产生的细胞外多糖(EPS)有所不同,被用于研究EPS在龋齿形成中的作用。该突变体在糖发酵、生长速率和血清型方面被证明与亲本菌株相同。GS-5菌株合成了一种EPS,在电子显微镜照片中其似乎具有纤维状结构,而该突变体不产生纤维状物质,只产生球状EPS。对EPS的分析表明,GS-5聚合物中约30%的葡萄糖单元带有(1-3)样键,要么作为分支点,要么作为线性主链的一部分,而突变体物质中仅含有约3%的这些键。当在蔗糖肉汤中生长时,突变体培养物附着在玻璃容器上的比例显著低于亲本菌株。该突变体在常规大鼠中产生的龋齿评分显著低于亲本菌株。由于在GS-5菌株和突变体之间发现的唯一差异是突变体无法合成纤维状EPS或具有超过约3%(1-3)样键的EPS,因此得出结论,GS-5菌株的纤维状EPS含有约30%(1-3)样键,对于细菌在表面的附着以及在实验动物中形成龋齿是必需的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/119f/234933/f90e0c8d0e49/jbacter00308-0369-a.jpg

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