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利用高亲和力T细胞受体,通过特异性肽/MHC复合物靶向病毒进入和膜融合。

Targeting virus entry and membrane fusion through specific peptide/MHC complexes using a high-affinity T-cell receptor.

作者信息

Peng K-W, Holler P D, Orr B A, Kranz D M, Russell S J

机构信息

Molecular Medicine Program, Mayo Clinic College of Medicine, Rochester, MN 55905, USA.

出版信息

Gene Ther. 2004 Aug;11(15):1234-9. doi: 10.1038/sj.gt.3302286.

Abstract

The T-cell receptor (TCR) determines the specificity of T-cell recognition by binding to peptide fragments of intracellular proteins presented at the cell surface in association with molecules of the major histocompatibility complex (MHC). Engagement of the TCR by its cognate peptide/MHC ligand, with appropriate co-stimulatory signals, leads to activation of T-cell effector functions. Here we show that the attachment proteins of attenuated measles viruses, engineered to display a high-affinity single-chain TCR (scTCR), can recognize and bind to specific peptide-MHC complexes and thereby mediate targeted virus-cell entry and cell-to-cell fusion. Using the 2C TCR and its peptide/MHC ligand (SIYRYYGL/mouse K(b)), we show that a scTCR grafted onto the measles virus H protein confers new specificity to virus entry and cell fusion. The efficiency of TCR-mediated virus entry was dependent on the number of peptide/MHC complexes expressed on the target cells, increasing progressively above densities higher than 2500 complexes per cell. This work introduces a new paradigm for targeting virus entry and membrane fusion by extending the repertoire of targets to specific peptide-MHC ligands and offering a novel quantitative readout for the cellular expression of peptide-MHC complexes.

摘要

T细胞受体(TCR)通过与主要组织相容性复合体(MHC)分子结合,识别细胞表面呈递的细胞内蛋白的肽片段,从而决定T细胞识别的特异性。TCR与其同源肽/MHC配体结合,并伴有适当的共刺激信号,可激活T细胞的效应功能。在此,我们表明,经过工程改造以展示高亲和力单链TCR(scTCR)的减毒麻疹病毒的附着蛋白,能够识别并结合特定的肽-MHC复合物,从而介导靶向病毒-细胞进入和细胞间融合。利用2C TCR及其肽/MHC配体(SIYRYYGL/小鼠K(b)),我们发现嫁接到麻疹病毒H蛋白上的scTCR赋予了病毒进入和细胞融合新的特异性。TCR介导的病毒进入效率取决于靶细胞上表达的肽/MHC复合物的数量,在高于每细胞2500个复合物的密度时逐渐增加。这项工作通过将靶标范围扩展到特定的肽-MHC配体,并为肽-MHC复合物的细胞表达提供了一种新的定量读数,引入了一种靶向病毒进入和膜融合的新范式。

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