Wetherell J R, Bleiweis A S
Infect Immun. 1975 Dec;12(6):1341-8. doi: 10.1128/iai.12.6.1341-1348.1975.
A cell wall-associated polysaccharide antigen was isolated from Streptococcus mutans GS-5 and appeared to determine serotype c specificity. Ouchterlony double-diffusion analysis of crude formamide extracts derived from purified cell walls of two serotype c strains (GS-5 and JC-2) showed complete identify when reacted with anti-GS-5 sera. Immunoelectrophoresis of this extract demonstrated the typical mobility for this serotype as described by others. Column chromatography on BioGel P-100 of the crude formamide extracts derived from GS-5 walls resulted in a single antigenic peak being resolved. This material, when loaded onto a diethylaminoethylcellulose column and eluted with a linear gradient of ammonium carbonate (0.0 to 0.2 M), was resolved further into two serologically reactive peaks (I and II). Only two consituents, rhamnose and glucose, were detected in the purified column fractions. Peak 1 had a rhamnoseto-glucose molar ratio of 0.9:1.0, and peak II, the major resolvable fraction, had a molar ratio of 1.7:1.0, The peak II ratio was very similar to that found in the formamide extract residue pellet (1.6:1.0)9 Ouchterlony analysis of the crude formamide extract and the purified fractions revealed only partial identify between peaks I and II but complete identify between peak II and the crude extract. Likewise, immunoelectrophoresis showed no differences in mobility of peak II and the crude extract, whereas peak I moved towards the cathode. Possible structural relationships between the two antigenic fractions are discussed below. Hapten inhibition studies suggested that an alpha-glucosyl group is at the immunodeterminant site of the antigen.
从变形链球菌GS-5中分离出一种与细胞壁相关的多糖抗原,它似乎决定了血清型c的特异性。对两株血清型c菌株(GS-5和JC-2)纯化细胞壁的粗甲酰胺提取物进行的双向琼脂扩散分析表明,与抗GS-5血清反应时呈现完全一致性。该提取物的免疫电泳显示出如其他人所描述的该血清型的典型迁移率。对GS-5细胞壁的粗甲酰胺提取物进行BioGel P-100柱色谱分析,得到一个单一的抗原峰。将该物质加载到二乙氨基乙基纤维素柱上,并用碳酸铵(0.0至0.2M)线性梯度洗脱,进一步分离为两个具有血清学反应性的峰(I和II)。在纯化的柱级分中仅检测到两种成分,即鼠李糖和葡萄糖。峰I的鼠李糖与葡萄糖摩尔比为0.9:1.0,峰II是主要的可分离级分,摩尔比为1.7:1.0,峰II的比例与甲酰胺提取物残渣沉淀中发现的比例(1.6:1.0)非常相似。对粗甲酰胺提取物和纯化级分的双向琼脂扩散分析表明,峰I和峰II之间仅部分一致,但峰II与粗提取物之间完全一致。同样,免疫电泳显示峰II和粗提取物的迁移率没有差异,而峰I向阴极移动。下面讨论了这两种抗原级分之间可能的结构关系。半抗原抑制研究表明,α-葡糖基位于抗原的免疫决定部位。