Koga T, Sato S, Inoue M, Takeuchi K, Furuta T, Hamada S
J Gen Microbiol. 1983 Mar;129(3):751-4. doi: 10.1099/00221287-129-3-751.
The effects of isomaltosaccharides of various molecular weights (isomaltose to dextran T2000) on glucan synthesis by a water-soluble glucan-synthesizing glucosyltransferase enzyme (GTase-S) and a water-insoluble glucan-synthesizing enzyme (GTase-I), both from Streptococcus mutans OMZ176, were examined. The activity of GTase-S was not affected by the addition of the isomaltosaccharides, but GTase-I was stimulated increasingly by isomaltosaccharides with degrees of polymerization more than 10. The GTase-I activity first increased and thereafter decreased slightly with increasing amounts of a soluble dextran. Maximal stimulation occurred at concentrations in the range 0.1 to 0.2 mg ml-1, when dextran T10 was used as a primer. The rate of glucan synthesis was highly enhanced by the combined action of GTase-S and GTase-I. The profile of the net activity of GTase-I in the presence of various amounts of GTase-S was similar to that of GTase-I in the presence of increasing amounts of an exogenous dextran. These results collectively suggest that soluble glucan produced by GTase-S from sucrose acts as an intrinsic primer for the glucan synthesis by GTase-I, indicating the contribution of autopriming in glucan synthesis by crude GTase of S. mutans.
研究了各种分子量的异麦芽糖(异麦芽糖至葡聚糖T2000)对变形链球菌OMZ176来源的水溶性葡聚糖合成葡糖基转移酶(GTase-S)和水不溶性葡聚糖合成酶(GTase-I)合成葡聚糖的影响。添加异麦芽糖不会影响GTase-S的活性,但聚合度超过10的异麦芽糖会使GTase-I的活性逐渐增强。随着可溶性葡聚糖量的增加,GTase-I的活性先升高,随后略有下降。当使用葡聚糖T10作为引物时,在0.1至0.2 mg/ml的浓度范围内出现最大刺激。GTase-S和GTase-I的联合作用极大地提高了葡聚糖的合成速率。在存在不同量GTase-S的情况下,GTase-I的净活性曲线与在存在不断增加量的外源葡聚糖的情况下GTase-I的曲线相似。这些结果共同表明,GTase-S从蔗糖产生的可溶性葡聚糖作为GTase-I合成葡聚糖的内在引物,表明自引物在变形链球菌粗GTase合成葡聚糖中的作用。