Coligan J E, Fraser B A, Kindt T J
J Immunol. 1977 Jan;118(1):6-11.
A disaccharide hapten was isolated in approximately 20% yield from an acid hydrolysate of the streptococcal Group C carbohydrate. This disaccharide was assigned the structure 3-0-alpha-N-acetylgalactosaminosyl-N-acetylgalactosamine on the basis of chemical and immunochemical data. The ability of the hapten to inhibit completely the binding between Group C carbohydrate and most Group C antibodies indicated that this disaccharide is the immunodominant feature of the Group C carbohydrate. Fractionation of antisera on an alpha-N-acetylgalactosamine immunoadsorbent column yielded several populations of anti-Group C antibodies. The reaction between labeled Group C carbohydrate and antibodies which strongly bound the immunoadsorbent column was 50% inhibitable by the disaccharide hapten when the hapten was added in approximately 15-fold excess (w/w) of the labeled antigen. On the other hand, the binding of those antibodies which did not bind to the immunoadsorbent column was poorly inhibited under these conditions. The Forssman glycosphingolipid, which has a common terminal digalactosamine unit, was shown to likewise inhibit Group C carbohydrate binding reactions.
从C群链球菌碳水化合物的酸水解产物中分离出一种二糖半抗原,产率约为20%。根据化学和免疫化学数据,该二糖的结构被确定为3-0-α-N-乙酰半乳糖胺基-N-乙酰半乳糖胺。半抗原完全抑制C群碳水化合物与大多数C群抗体之间结合的能力表明,这种二糖是C群碳水化合物的免疫显性特征。在α-N-乙酰半乳糖胺免疫吸附柱上对抗血清进行分级分离,得到了几群抗C群抗体。当以大约15倍过量(w/w)的标记抗原加入二糖半抗原时,标记的C群碳水化合物与强烈结合免疫吸附柱的抗体之间的反应有50%可被抑制。另一方面,在这些条件下,那些不与免疫吸附柱结合的抗体的结合受到的抑制很小。具有共同末端二半乳糖胺单元的福斯曼糖鞘脂同样被证明可抑制C群碳水化合物结合反应。