Nakano Y J, Kuramitsu H K
Department of Pediatric Dentistry, University of Texas Health Science Center, San Antonio 78284.
J Bacteriol. 1992 Sep;174(17):5639-46. doi: 10.1128/jb.174.17.5639-5646.1992.
Streptococcus mutans GS5 expresses three glucosyltransferases (GTFs): GTF-I and GTF-SI, which synthesize water-insoluble glucans in a primer-independent manner, and GTF-S, which is responsible for the formation of primer-dependent soluble glucan. The amino acid sequences of the GTF-I and GTF-S enzymes exhibit approximately 50% sequence identity. Various hybrid genes were constructed from the structural genes for the enzymes, and their products were analyzed. Three different approaches were used to construct the hybrid enzymes: (i) ligation of DNA fragments containing compatible endonuclease restriction sites of the two genes at homologous positions; (ii) in vivo recombination between the homologous regions of each gene; and (iii) random fusion of DNA fragments from each gene generated following exonuclease III digestion of tandemly arranged fragments corresponding to the two functional domains of each enzyme. Hybrid GTFs composed of the sucrose-binding domain of one enzyme (GTF-I or GTF-S) with the glucan-binding domain of the other synthesized insoluble glucan exclusively in the absence of primer dextran. Insoluble glucan synthesis by some, but not all, of the GTF-S:GTF-I chimeric enzymes was stimulated by primer dextran T10 addition. In addition, glucan binding by the former but not latter group of hybrid GTFs was demonstrated. These results suggest that the glucan-binding domain alone does not solely determine primer dependence or independence or the structure of the resulting glucan product, although this carboxyl-terminal domain containing direct repeating units does appear to play a significant role in primer dependence.
变形链球菌GS5表达三种葡糖基转移酶(GTF):GTF-I和GTF-SI,它们以不依赖引物的方式合成水不溶性葡聚糖,以及GTF-S,其负责形成依赖引物的可溶性葡聚糖。GTF-I和GTF-S酶的氨基酸序列显示出约50%的序列同一性。从这些酶的结构基因构建了各种杂交基因,并对其产物进行了分析。使用了三种不同的方法来构建杂交酶:(i)在同源位置连接含有两个基因的相容核酸内切酶限制位点的DNA片段;(ii)每个基因的同源区域之间的体内重组;以及(iii)在核酸外切酶III消化对应于每种酶的两个功能域的串联排列片段后产生的来自每个基因的DNA片段的随机融合。由一种酶(GTF-I或GTF-S)的蔗糖结合结构域与另一种酶的葡聚糖结合结构域组成的杂交GTF仅在不存在引物葡聚糖的情况下合成不溶性葡聚糖。添加引物葡聚糖T10刺激了一些但不是所有的GTF-S:GTF-I嵌合酶的不溶性葡聚糖合成。此外, 证明了前一组杂交GTF具有葡聚糖结合能力,而后一组则没有。这些结果表明,仅葡聚糖结合结构域并不能单独决定引物依赖性或独立性或所得葡聚糖产物的结构,尽管这个含有直接重复单元的羧基末端结构域似乎在引物依赖性中起重要作用。