首页> 美国卫生研究院文献>The Journal of Experimental Medicine >The human natural anti-Gal IgG. III. The subtlety of immune tolerance in man as demonstrated by crossreactivity between natural anti-Gal and anti-B antibodies
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The human natural anti-Gal IgG. III. The subtlety of immune tolerance in man as demonstrated by crossreactivity between natural anti-Gal and anti-B antibodies

机译:人天然抗-Gal IgG。三天然抗Gal和抗B抗体之间的交叉反应性证明了人类免疫耐受的微妙之处

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摘要

A well-defined antigen/antibody system was used to evaluate the effect of immune tolerance on the spectrum of specificities of natural antibodies. The antibody used in this study, anti-Gal, is a naturally occurring, polyclonal IgG that constitutes 1% of the circulating IgG in humans. We have previously shown that anti-Gal, purified from AB sera, specifically interacts with glycosphingolipids bearing a Gal alpha 1---- 3Gal epitope, but not with the closely related B antigen in which the penultimate galactose of the Gal alpha 1----3Gal epitope is fucosylated Gal alpha 1----3(Fuc alpha 1----2)Gal. This narrow specificity was assumed to be the result of an effective immune tolerance mechanism that prevents the expression of antibody clones that can recognize both the Gal alpha 1----3Gal and the self B epitopes. If the assumption that immune tolerance determines the range of anti-Gal specificity is correct, then anti-Gal from individuals lacking the B antigen (A and O blood types) would be expected to interact with both Gal alpha 1---- 3Gal and Gal alpha 1----3(Fuc alpha 1----2)Gal epitopes. In this study, anti-Gal from the serum of individuals of various blood types was purified by affinity chromatography on Gal alpha 1----3Gal adsorbent and tested for its reaction with the B antigen. Whereas anti-Gal from AB and B individuals only reacted with Gal alpha 1----3Gal epitopes, anti-Gal from A and O individuals reacted with both Gal alpha 1----3Gal and B epitopes. Furthermore, it was determined that the majority of anti-B reactivity in A and O individuals is in fact anti-Gal antibodies capable of recognizing both Gal alpha 1----3Gal and B epitopes. It can be concluded from these results that immune tolerance accurately controls the spectrum of natural antibody specificities by preventing the production of antibody clones that can interact with self antigens.
机译:定义明确的抗原/抗体系统用于评估免疫耐受对天然抗体特异性谱的影响。这项研究中使用的抗体抗Gal是天然存在的多克隆IgG,占人体循环IgG的1%。我们以前已经证明,从AB血清中纯化的抗Gal可以与带有Gal alpha 1 ---- 3Gal表位的糖鞘脂特异性相互作用,但不能与Gal Al 1倒数第二半乳糖的密切相关的B抗原相互作用。 --3Gal表位是岩藻糖基化的Gal alpha 1 ---- 3(Fuc alpha 1 ---- 2)Gal。这种狭窄的特异性被认为是有效的免疫耐受机制的结果,该机制阻止了可以识别Gal alpha 1 ----- 3Gal和自身B表位的抗体克隆的表达。如果免疫耐受决定抗Gal特异性的范围的假设是正确的,那么来自缺乏B抗原(A和O血型)的个体的抗Gal可能会与Gal alpha 1 ---- 3Gal和Gal alpha 1 ---- 3(Fuc alpha 1 ---- 2)Gal表位。在这项研究中,通过在Gal alpha 1–3Gal吸附剂上进行亲和色谱法纯化了各种血液类型的个体血清中的抗Gal,并测试了其与B抗原的反应。来自AB和B个体的抗Gal仅与Gal alpha 1 ---- 3Gal表位反应,而来自A和O个体的抗Gal与Gal alpha 1 ---- 3Gal和B表位反应。此外,已确定在A和O个体中的大多数抗B反应性实际上是能够识别Gal alpha 1-3Gal和B表位的抗Gal抗体。从这些结果可以得出结论,免疫耐受通过防止产生可以与自身抗原相互作用的抗体克隆来精确地控制天然抗体特异性的光谱。

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