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针对蛋白质混合物的免疫应答中的抗原竞争:大肠杆菌抗原的菌株特异性非免疫原性

Antigenic competition in the immune response against protein mixtures: strain-specific non-immunogenicity of Escherichia coli antigens.

作者信息

Hammerl P, Weger R, Thalhamer J

机构信息

Department of Biochemistry, University of Salzburg, Austria.

出版信息

Mol Immunol. 1988 Mar;25(3):313-20. doi: 10.1016/0161-5890(88)90023-5.

Abstract

Antigenic competition is argued to impair the immune response on the level of accessory cell-dependent antigen presentation to responsive T-cells (regulated by MHC encoded Ir gene products). A possible influence of these mechanisms on in vivo immunization with antigen mixtures was investigated by using cytoplasmic extracts of four different strains of Escherichia coli as antigen sources for immunizing rabbits. The immune response against these antigen mixtures was tested by crossed immune electrophoresis (CIE) and immunoblotting (IB) in a homologous system (a given antigen extract of one strain against the corresponding antisera) and in the heterologous system (antigen extract of one strain against the antisera of different other strains). Several proteins were non-immunogenic in the extract of one strain but elicited good antibody responses in other strains. One of the strain-specific non-immunogenic proteins was purified and revealed a normal immune response upon immunization. The data suggest that different antigenic competition effects are induced by different protein compositions of antigen mixtures. This strain-specific competition seems to determine the immunogenicity of certain molecules (and not only the immunogenic properties of the molecules themselves). Furthermore this method offers a practical approach to increase the antibody production against weak immunogens in antigen mixtures.

摘要

抗原竞争被认为会在辅助细胞依赖性抗原呈递给反应性T细胞(由MHC编码的Ir基因产物调节)的水平上损害免疫反应。通过使用四种不同大肠杆菌菌株的细胞质提取物作为免疫兔子的抗原来源,研究了这些机制对体内用抗原混合物免疫的可能影响。通过交叉免疫电泳(CIE)和免疫印迹(IB)在同源系统(一种菌株的给定抗原提取物与相应抗血清)和异源系统(一种菌株的抗原提取物与不同其他菌株的抗血清)中测试了对这些抗原混合物的免疫反应。几种蛋白质在一种菌株的提取物中无免疫原性,但在其他菌株中引发了良好的抗体反应。其中一种菌株特异性的无免疫原性蛋白质被纯化,并在免疫后显示出正常的免疫反应。数据表明,不同的抗原混合物蛋白质组成会诱导不同的抗原竞争效应。这种菌株特异性竞争似乎决定了某些分子的免疫原性(而不仅仅是分子本身的免疫原特性)。此外,该方法为提高对抗原混合物中弱免疫原的抗体产生提供了一种实用方法。

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