首页> 外文期刊>International immunology. >Chimeric beta2 microglobulin/CD3zeta polypeptides expressed in T cells convert MHC class I peptide ligands into T cell activation receptors: a potential tool for specific targeting of pathogenic CD8(+) T cells.
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Chimeric beta2 microglobulin/CD3zeta polypeptides expressed in T cells convert MHC class I peptide ligands into T cell activation receptors: a potential tool for specific targeting of pathogenic CD8(+) T cells.

机译:在T细胞中表达的嵌合beta2微球蛋白/ CD3zeta多肽将MHC I类肽配体转化为T细胞活化受体:一种特异性靶向致病性CD8(+)T细胞的潜在工具。

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摘要

CD8(+) T cells are key mediators of transplant rejection and graft-versus-host disease and contribute to the pathogenesis of autoimmune diseases. We tested whether TCR ligands can be converted into T cell activation receptors, redirecting genetically modified T cells at pathogenic CD8(+) T cells. For this purpose we exploited the ability of the non-polymorphic beta(2) microglobulin light chain to pair with all MHC class I heavy chains. In this report we describe the design and expression in a T cell hybridoma of two modalities of beta(2) microglobulin polypeptides, fused with the transmembrane and intracellular portion of CD3zeta chain. In the absence of a particular antigenic peptide, the chimeric product associates with different endogenous MHC class I heavy chains and triggers T cell activation upon heavy chain cross-linking. When an antigenic peptide is covalently attached to the N-terminus of the chimeric polypeptide, transfectants express high level of surface peptide-class I complexes and respond to antibodies and target T cells in a peptide-specific manner. Our results provide the basis for a universal genetic approach aimed at antigen-specific immunotargeting of pathogenic CD8(+) T cells.
机译:CD8(+)T细胞是移植排斥反应和移植物抗宿主病的关键介质,并有助于自身免疫性疾病的发病机理。我们测试了TCR配体是否可以转化为T细胞活化受体,从而在致病性CD8(+)T细胞处重定向了基因修饰的T细胞。为此,我们利用了非多态性β(2)微球蛋白轻链与所有MHC I类重链配对的能力。在本报告中,我们描述了两种形式的β(2)微球蛋白多肽与CD3zeta链的跨膜和细胞内部分融合的T细胞杂交瘤的设计和表达。在不存在特定抗原肽的情况下,嵌合产物与不同的内源性I类MHC重链缔合,并在重链交联时触发T细胞活化。当抗原性肽共价附于嵌合多肽的N端时,转染子表达高水平的表面I类表面肽复合物,并以肽特异性方式对抗体和靶T细胞产生反应。我们的结果为针对致病性CD8(+)T细胞的抗原特异性免疫靶向的通用遗传学方法提供了基础。

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