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一种由鸡IgM抗体检测到的、存在于哺乳动物IgM和红细胞中的嗜异性碳水化合物部分。

A heterophile carbohydrate moiety common to mammalian IgM and erythrocytes detected by chicken IgM antibody.

作者信息

Ivanyi J, Strudwick L, Makings C

出版信息

Eur J Immunol. 1977 Apr;7(4):204-9. doi: 10.1002/eji.1830070403.

Abstract

Sequential treatment of chicken lymphocytes with normal sheep serum (NSS), chicken antiserum against sheep erythrocytes (SE) and formaldehyde results in rosette formation with SE. The identity of reactive components and the mechanism of rosette formation has been elucidated. The binding activity of NSS to chicken lymphocytes was ascribed to "natural" IgM anti-species antibodies. Subsequently, chicken IgM anti-SE antibody reacted with sheep IgM bound to the lymphocyte surface, and, following formaldehyde fixation, rosettes were formed by the addition of SE. The reaction of chicken anti-SE antibody was competitively inhibited with a hog blood group substance suggesting that it had binding specificity for a carbohydrate moiety which is shared by sheep IgM and SE. This specificity represented only a fraction of the bulk of chicken IgM anti-SE antibodies and was not manifested by antibodies of the IgG class. The analysis by the above-described "sandwich rosette assay" was extended to chicken antisera against horse, rat and mouse red cells and to normal sera from these species. Cross-matching of chicken antisera, with the normal sera and red cells from the tested species revealed a distinct pattern of cross-reactivities. These results imply that the saccharide epitope which is shared by IgM and red cells has a wide distribution between various mammalian species and may be classified as a new system of heterophile antigens.

摘要

用正常绵羊血清(NSS)、鸡抗绵羊红细胞(SE)抗血清和甲醛对鸡淋巴细胞进行顺序处理,可导致与SE形成玫瑰花结。已阐明了反应成分的特性和玫瑰花结形成的机制。NSS与鸡淋巴细胞的结合活性归因于“天然”IgM抗物种抗体。随后,鸡IgM抗SE抗体与结合在淋巴细胞表面的绵羊IgM反应,并且在甲醛固定后,通过加入SE形成玫瑰花结。鸡抗SE抗体的反应被猪血凝集素竞争性抑制,这表明它对绵羊IgM和SE共有的碳水化合物部分具有结合特异性。这种特异性仅代表鸡IgM抗SE抗体总量的一部分,并且IgG类抗体未表现出这种特异性。通过上述“夹心玫瑰花结试验”的分析扩展到鸡抗马、大鼠和小鼠红细胞的抗血清以及这些物种的正常血清。鸡抗血清与受试物种的正常血清和红细胞的交叉匹配揭示了一种独特的交叉反应模式。这些结果表明,IgM和红细胞共有的糖表位在各种哺乳动物物种之间广泛分布,并且可以归类为一种新的嗜异性抗原系统。

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