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使用异质性亚优势病毒T细胞决定簇预防细胞毒性T细胞逃逸。

Prevention of cytotoxic T cell escape using a heteroclitic subdominant viral T cell determinant.

作者信息

Butler Noah S, Theodossis Alex, Webb Andrew I, Nastovska Roza, Ramarathinam Sri Harsha, Dunstone Michelle A, Rossjohn Jamie, Purcell Anthony W, Perlman Stanley

机构信息

Department of Microbiology, University of Iowa, Iowa City, Iowa, United States of America.

出版信息

PLoS Pathog. 2008 Oct;4(10):e1000186. doi: 10.1371/journal.ppat.1000186. Epub 2008 Oct 24.

Abstract

High affinity antigen-specific T cells play a critical role during protective immune responses. Epitope enhancement can elicit more potent T cell responses and can subsequently lead to a stronger memory pool; however, the molecular basis of such enhancement is unclear. We used the consensus peptide-binding motif for the Major Histocompatibility Complex molecule H-2K(b) to design a heteroclitic version of the mouse hepatitis virus-specific subdominant S598 determinant. We demonstrate that a single amino acid substitution at a secondary anchor residue (Q to Y at position 3) increased the stability of the engineered determinant in complex with H-2K(b). The structural basis for this enhanced stability was associated with local alterations in the pMHC conformation as a result of the Q to Y substitution. Recombinant viruses encoding this engineered determinant primed CTL responses that also reacted to the wildtype epitope with significantly higher functional avidity, and protected against selection of virus mutated at a second CTL determinant and consequent disease progression in persistently infected mice. Collectively, our findings provide a basis for the enhanced immunogenicity of an engineered determinant that will serve as a template for guiding the development of heteroclitic T cell determinants with applications in prevention of CTL escape in chronic viral infections as well as in tumor immunity.

摘要

高亲和力抗原特异性T细胞在保护性免疫反应中起关键作用。表位增强可引发更强的T细胞反应,并随后导致更强的记忆库;然而,这种增强的分子基础尚不清楚。我们利用主要组织相容性复合体分子H-2K(b)的共有肽结合基序设计了小鼠肝炎病毒特异性亚优势S598决定簇的异肽变体。我们证明,在二级锚定残基(第3位的Q替换为Y)处的单个氨基酸替换增加了工程化决定簇与H-2K(b)复合物的稳定性。这种增强稳定性的结构基础与由于Q到Y替换导致的pMHC构象的局部改变有关。编码这种工程化决定簇的重组病毒引发的CTL反应也能以显著更高的功能亲和力对野生型表位作出反应,并能防止在第二个CTL决定簇处发生突变的病毒的选择以及持续感染小鼠中随之而来的疾病进展。总的来说,我们的研究结果为工程化决定簇增强的免疫原性提供了基础,这将作为指导异肽T细胞决定簇开发的模板,应用于预防慢性病毒感染中的CTL逃逸以及肿瘤免疫。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9ac9/2563037/0328eb190ae3/ppat.1000186.g001.jpg

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