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肽-HLA-I呈递的非常规模式改变了TCR结合的规则。

Unconventional modes of peptide-HLA-I presentation change the rules of TCR engagement.

作者信息

Hopkins Jade R, MacLachlan Bruce J, Harper Stephen, Sewell Andrew K, Cole David K

机构信息

Division of Infection and Immunity and Systems Immunity Research Institute, Cardiff University School of Medicine, Heath Park, Cardiff, UK.

Immunocore, Abingdon, UK.

出版信息

Discov Immunol. 2022 May 4;1(1):kyac001. doi: 10.1093/discim/kyac001. eCollection 2022.

Abstract

The intracellular proteome of virtually every nucleated cell in the body is continuously presented at the cell surface the human leukocyte antigen class I (HLA-I) antigen processing pathway. This pathway classically involves proteasomal degradation of intracellular proteins into short peptides that can be presented by HLA-I molecules for interrogation by T-cell receptors (TCRs) expressed on the surface of CD8 T cells. During the initiation of a T-cell immune response, the TCR acts as the T cell's primary sensor, using flexible loops to mould around the surface of the pHLA-I molecule to identify foreign or dysregulated antigens. Recent findings demonstrate that pHLA-I molecules can also be highly flexible and dynamic, altering their shape according to minor polymorphisms between different HLA-I alleles, or interactions with different peptides. These flexible presentation modes have important biological consequences that can, for example, explain why some HLA-I alleles offer greater protection against HIV, or why some cancer vaccine approaches have been ineffective. This review explores how these recent findings redefine the rules for peptide presentation by HLA-I molecules and extend our understanding of the molecular mechanisms that govern TCR-mediated antigen discrimination.

摘要

通过人类白细胞抗原I类(HLA-I)抗原加工途径,人体内几乎每个有核细胞的细胞内蛋白质组都持续呈递于细胞表面。该途径通常涉及细胞内蛋白质经蛋白酶体降解为短肽,这些短肽可由HLA-I分子呈递,以供CD8 T细胞表面表达的T细胞受体(TCR)识别。在T细胞免疫应答启动过程中,TCR作为T细胞的主要传感器,利用柔性环围绕pHLA-I分子表面塑形,以识别外来或失调的抗原。最近的研究结果表明,pHLA-I分子也可能具有高度的灵活性和动态性,会根据不同HLA-I等位基因之间的微小多态性或与不同肽段的相互作用而改变其形状。这些灵活的呈递模式具有重要的生物学意义,例如,可以解释为什么某些HLA-I等位基因对HIV具有更强的保护作用,或者为什么某些癌症疫苗方法无效。本综述探讨了这些最新发现如何重新定义HLA-I分子呈递肽段的规则,并扩展了我们对调控TCR介导的抗原识别分子机制的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6499/10917088/042fee0f1ed7/kyac001_fig1.jpg

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