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首页> 外文期刊>Current opinion in organ transplantation >Generation of MHC class II-peptide ligands for CD4 T-cell allorecognition of MHC class II molecules.
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Generation of MHC class II-peptide ligands for CD4 T-cell allorecognition of MHC class II molecules.

机译:用于MHC II类分子的CD4 T细胞同种异体识别的MHC II类肽配体的生成。

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PURPOSE OF REVIEW: The molecular and cellular mechanisms that underlie allorecognition of MHC class II molecules have been the subject of much debate and experimentation in recent decades. In this review, we discuss several aspects of MHC class II structure, peptide acquisition and TcR-MHC-peptide interactions that have particular relevance to recognition of cells bearing allogeneic class II molecules. RECENT FINDINGS: First, MHC polymorphism is heavily biased toward those amino acids that influence stable peptide binding by MHC class II. Second, the peptide repertoire presented by class II molecules is highly diverse and can be edited substantially by the molecular catalyst HLA-DM and by tissue-specific expression of HLA-DO, stress and cytokines. Third, T-cell receptor docking onto MHC peptide consistently involves substantial contacts with the bound peptide in the MHC class II molecule. Finally, there is increasing evidence that T-cell recognition of MHC is, in part, germline encoded through T-cell-receptor V region contacts with MHC class II alpha helices. SUMMARY: Together, these conclusions support the view that allorecognition of MHC class II molecules is likely to parallel key aspects of conventional CD4 T-cell recognition, with allele-dependent variation in peptide representation accounting in large part for the high precursor frequency of alloreactive CD4 T cells.
机译:审查的目的:近几十年来,构成MHC II类分子的同种异体认知基础的分子和细胞机制一直是许多辩论和实验的主题。在这篇综述中,我们讨论了MHC II类结构,肽获得和TcR-MHC-肽相互作用的几个方面,这些方面与识别带有同种异体II类分子的细胞特别相关。最近的发现:首先,MHC多态性严重偏向那些影响II类MHC稳定肽结合的氨基酸。其次,II类分子提供的肽库非常多样化,可以通过分子催化剂HLA-DM以及HLA-DO,应激和细胞因子的组织特异性表达进行实质性编辑。第三,对接在MHC肽上的T细胞受体始终涉及与II类MHC分子中结合的肽的大量接触。最后,越来越多的证据表明,MHC的T细胞识别部分是通过T细胞受体V区与MHC II类α螺旋接触而编码的种系。总结:这些结论共同支持这样的观点,即MHC II类分子的同种异体识别很可能与常规CD4 T细胞识别的关键方面平行,肽表达的等位基因依赖性变化在很大程度上解释了同种异体反应性CD4的高前体频率T细胞。

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