Suginaka H, Ebisu S, Kotani S
Microbiol Immunol. 1978;22(12):745-54. doi: 10.1111/j.1348-0421.1978.tb00428.x.
The binding of radioactive glucan to Streptococcus mutans cells, which are agglutinated by dextrans, was examined. The glucan was synthesized from sucrose by extracellular glucosyltransferases from S. mutans FA-1 and was highly branched at C-3 and C-6 of D-glucose residues, containing 17% of a (1 leads to 3)inter-chain residues. Binding of glucan to whole cells of S. mutans OMZ-176, which were agglutinated by addition of glucan or Dextran T2000, was irreversible and followed saturation type kinetics; saturation was achieved at approximately 110 ng of glucan per ml. About 14 ng of glucan were bound per mg of the cells at the saturated concentration. The heated cells of this organism, however, had a relatively low ability of glucan-binding, compared with the freshly prepared and lyophilized cells. Binding to the heated cells was entirely of a non-saturation type. Binding of Dextran T2000 or T10 was determined by competition between the labeled glucan and unlabeled Dextrans for the binding site(s). Both Dextrans and glucan from S. mutans FA-1 were bound to the same site(s). Other organisms, which did not undergo glucan- and Dextran-induced agglutination, had a relatively lower ability of glucan-binding than S. mutans, which was agglutinated.
研究了放射性葡聚糖与变形链球菌细胞的结合情况,变形链球菌细胞可被葡聚糖凝集。该葡聚糖由变形链球菌FA-1的胞外葡糖基转移酶从蔗糖合成,在D-葡萄糖残基的C-3和C-6处高度分支,含有17%的α(1→3)链间残基。葡聚糖与变形链球菌OMZ-176全细胞的结合是不可逆的,遵循饱和型动力学;每毫升约110 ng葡聚糖时达到饱和。在饱和浓度下,每毫克细胞结合约14 ng葡聚糖。然而,与新鲜制备并冻干的细胞相比,该生物体的加热细胞结合葡聚糖的能力相对较低。与加热细胞的结合完全是非饱和型的。通过标记的葡聚糖和未标记的葡聚糖对结合位点的竞争来测定葡聚糖T2000或T10的结合。葡聚糖T2000和来自变形链球菌FA-1的葡聚糖都结合到相同的位点。其他未经历葡聚糖和葡聚糖诱导凝集的生物体,其结合葡聚糖的能力比可被凝集的变形链球菌相对较低。