Chludzinski A M, Germaine G R, Schachtele C F
J Dent Res. 1976 Apr;55 Spec No:C75-86. doi: 10.1177/002203457605500329011.
We attempted to purify dextransucrase from S mutans strain 6715 to investigate its properties and determine if multiple species of the enzyme existed. It was concluded that the properties of this enzyme such as the pH (5.5), temperature (37 C) optimum, and Km for sucrose (3 mM) are very similar to those reported for S sanguis, S bovis, S mutans strain OMZ-176 isozymes, S mutans strain GS-5, and the single dextransucrase purified from S mutans strain HS-6. The IEF enzyme preparation consisted of two enzyme species, possibly differing in their ability to synthesize different dextran linkages. The minor enzyme activity demonstrated a strict primer dependency. Similarly, primer dependency has been reported for dextransucrases from S mutans, S sanguis, and L mesenteroides. S mutans strain 6715 dextransucrase also showed both the insertion and stepwise mechanisms for dextran synthesis. Sucrose was the sole glucose donor, whereas dextran was a specific, highly efficient glucose acceptor. The complex primer kinetics are not fully understood at this time and require further investigation. Without linkage analysis of the products of our enzymes, we can only postulate that each enzyme has a different function in the synthesis of interresidue and interchain alpha1-3 and alpha1-6 bonds. Insoluble dextran synthesis may involve a special enzyme mechanism characteristic of S mutans. This synthesis would require both enzymes, possibly in some aggregated form, with one enzyme synthesizing endogenous primer dextran. This endogeneous primer or some cell wall polysaccharide could stimulate both enzymes to rapidly synthesize heterogeneously linked insoluble dextran.
我们试图从变形链球菌6715菌株中纯化葡聚糖蔗糖酶,以研究其性质,并确定是否存在多种该酶。得出的结论是,这种酶的性质,如最适pH(5.5)、温度(37℃)以及对蔗糖的米氏常数(3 mM),与报道的血链球菌、牛链球菌、变形链球菌OMZ-176同工酶、变形链球菌GS-5菌株以及从变形链球菌HS-6菌株中纯化得到的单一葡聚糖蔗糖酶非常相似。等电聚焦酶制剂由两种酶组成,它们合成不同葡聚糖键的能力可能有所不同。次要的酶活性表现出严格的引物依赖性。同样,变形链球菌、血链球菌和肠系膜明串珠菌的葡聚糖蔗糖酶也有引物依赖性的报道。变形链球菌6715菌株的葡聚糖蔗糖酶在葡聚糖合成中还表现出插入和逐步机制。蔗糖是唯一的葡萄糖供体,而葡聚糖是一种特异性的、高效的葡萄糖受体。目前对复杂的引物动力学还不完全清楚,需要进一步研究。在没有对我们的酶产物进行连接分析的情况下,我们只能推测每种酶在合成残基间和链间α1-3和α1-6键时具有不同的功能。不溶性葡聚糖的合成可能涉及变形链球菌特有的一种特殊酶机制。这种合成可能需要两种酶,可能以某种聚集形式存在,其中一种酶合成内源性引物葡聚糖。这种内源性引物或某些细胞壁多糖可以刺激两种酶快速合成异质连接的不溶性葡聚糖。