抗体库的性质和获得的自我非自我区别。

Annales d'immunologie Pub Date : 1980-11-01
A Coutinho
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引用次数: 0

摘要

网络理论面临着抗体多样性起源假说和自我非自我歧视假说的挑战。讨论了调和抗体系统的普罗米修斯进化与“生殖系”理论的困难,以及解释抗体库完整性的“体细胞”假说的问题。网络理论与基于消除自我反应细胞的自我非自我区分的观点在形式上是不相容的,以及这些和其他依赖环境的淋巴细胞激活假说的困难,包括免疫系统的内部活动。另一方面,有人认为,网络理论在为独特型网络提供功能基础和解释自我-非自我区别方面的局限性,可以通过在完整的抗体结合位点中找到与B淋巴细胞上生长受体的互补结构,并通过在前体细胞池的扩张和成熟稳定状态的维持中使用这些作为内部有丝分裂原来解决。让这种生长受体来解释自我与非自我的区别,也可以确保抗体库的完整性和系统的内部活性。此外,通过假设抗受体抗体的种系起源,并通过接受生长受体和其他种系抗体之间的独特型交叉反应,为具有自我扩展、多样化和选择可用曲目能力的系统发育和个体发育自主免疫系统设定了可能性。它的完整性解释了它的活尸特性,这是通过生长受体和有限数量的互补或交叉反应的种系抗体之间的独特型相互作用实现的,这些抗体是根据它们与生长受体的结构关系自然选择的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The self-nonself discrimination and the nature and acquisition of the antibody repertoire.

Network ideas are confronted with current hypotheses for the origin of antibody diversity and self-nonself discrimination. The difficulties of reconciling the promethean evolution of the antibody system with "germ line" theories are discussed, as well as the problems of "somatic" hypotheses to explain the completeness of the antibody repertoire. The formal incompatibility of the network theory with ideas basing self-nonself discrimination on the elimination of self-reactive cells is demonstrated, as well as the difficulties of these and other environment-dependent hypotheses for lymphocyte activation, to encompass the internal activity in the immune system. It is argued, on the other hand, that the limitations of the network theory in providing a functional basis for the idiotypic network and in accounting for self-nonself discrimination, can be solved by finding in a complete repertoire of antibody-combining sites the complementary structures to growth receptors on B lymphocytes, and by using these as internal mitogens in the expansion of the precursor cell pools and in the maintenance of the mature steady states. Letting self-nonself discrimination be accounted for by such growth receptors, both the integrity of the antibody repertoire and the internal activity in the system can also be ensured. Moreover, by postulating a germ line origin for the antireceptor antibodies and by accepting idiotypic cross-reactivity between growth receptors and other germ line antibodies, the possibilities are set for a phylogenetically and ontogenically autonomous immune system embodied with the capabilities for self-expansion, diversification and selection of available repertoires. Its promethean characteristics are explained by its completeness, and this is achieved by idiotypic interactions between growth receptors and a limited number of complementary or cross-reactive germ line antibodies, naturally selected on the basis of their structural relationships with growth receptors.

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