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适应性免疫中的 TAP 易位机制和病毒逃逸机制。

The TAP translocation machinery in adaptive immunity and viral escape mechanisms.

机构信息

Institute of Biochemistry, Goethe University Frankfurt, Max-von-Laue Strasse 9, D-60438 Frankfurt/Main, Germany.

出版信息

Essays Biochem. 2011 Sep 7;50(1):249-64. doi: 10.1042/bse0500249.

Abstract

The adaptive immune system plays an essential role in protecting vertebrates against a broad range of pathogens and cancer. The MHC class I-dependent pathway of antigen presentation represents a sophisticated cellular machinery to recognize and eliminate infected or malignantly transformed cells, taking advantage of the proteasomal turnover of the cell's proteome. TAP (transporter associated with antigen processing) 1/2 (ABCB2/3, where ABC is ATP-binding cassette) is the principal component in the recognition, translocation, chaperoning, editing and final loading of antigenic peptides on to MHC I complexes in the ER (endoplasmic reticulum) lumen. These different tasks are co-ordinated within a dynamic macromolecular peptide-loading complex consisting of TAP1/2 and various auxiliary factors, such as the adapter protein tapasin, the oxidoreductase ERp57, the lectin chaperone calreticulin, and the final peptide acceptor the MHC I heavy chain associated with β2-microglobulin. In this chapter, we summarize the structural organization and molecular mechanism of the antigen-translocation machinery as well as various modes of regulation by viral factors and in genetic diseases and tumour development.

摘要

适应性免疫系统在保护脊椎动物免受广泛的病原体和癌症方面起着至关重要的作用。MHC I 类依赖性抗原呈递途径代表了一种复杂的细胞机制,可识别和消除感染或恶性转化的细胞,利用细胞蛋白质组的蛋白酶体降解。TAP(抗原加工相关转运体)1/2(ABCB2/3,其中 ABC 是 ATP 结合盒)是在 ER(内质网)腔中识别、转运、伴侣、编辑和最终加载抗原肽到 MHC I 复合物的主要成分。这些不同的任务在由 TAP1/2 和各种辅助因子组成的动态大分子肽加载复合物中协调,这些辅助因子包括衔接蛋白 tapasin、氧化还原酶 ERp57、凝集素伴侣分子 calreticulin 和最终的肽受体与 β2-微球蛋白结合的 MHC I 重链。在本章中,我们总结了抗原转运机制的结构组织和分子机制,以及病毒因子和遗传疾病与肿瘤发展中的各种调节模式。

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