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首页> 外文期刊>The journal of immunology >Preferential Recognition of TCR Hypervariable Regions by Human Anti-Idiotypic T Cells Induced by T Cell Vaccination
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Preferential Recognition of TCR Hypervariable Regions by Human Anti-Idiotypic T Cells Induced by T Cell Vaccination

机译:T细胞疫苗诱导的人抗独特型T细胞对TCR高变区的优先识别

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T cell responses to myelin basic protein (MBP) are potentially involved in the pathogenesis of multiple sclerosis (MS). Immunization with irradiated MBP-reactive T cells (T cell vaccination) induces anti-idiotypic T cell responses that suppress circulating MBP-reactive T cells. This T cell-T cell interaction is thought to involve the recognition of TCR expressed on target T cells. The study was undertaken to define the idiotypic determinants responsible for triggering CD8+ cytotoxic anti-idiotypic T cell responses by T cell vaccination in patients with MS. A panel of 9-mer synthetic TCR peptides corresponding to complementarity-determining region 2 (CDR2) and CDR3 of the immunizing MBP-reactive T cell clones were used to isolate anti-idiotypic T cell lines from immunized MS patients. The resulting TCR-specific T cell lines expressed exclusively the CD8 phenotype and recognized preferentially the CDR3 peptides. CDR3-specific T cell lines were found to lyze specifically autologous immunizing MBP-reactive T cell clones. The findings suggest that CDR3-specific T cells represented anti-idiotypic T cell population induced by T cell vaccination. In contrast, the CDR2 peptides were less immunogenic and contained cryptic determinants as the CDR2-specific T cell lines did not recognize autologous immunizing T cell clones from which the peptide sequence was derived. The study has important implications in our understanding of in vivo idiotypic regulation of autoimmune T cells and the regulatory mechanism underlying T cell vaccination.
机译:T细胞对髓鞘碱性蛋白(MBP)的反应可能与多发性硬化症(MS)的发病机理有关。用辐照过的MBP反应性T细胞进行免疫接种(T细胞疫苗接种)会诱导抗独特型T细胞反应,从而抑制循环的MBP反应性T细胞。人们认为这种T细胞与T细胞的相互作用涉及识别在靶T细胞上表达的TCR。进行该研究以定义负责通过MS患者中的T细胞疫苗接种触发CD8 +细胞毒性抗独特型T细胞应答的独特型决定簇。一组对应于免疫MBP反应性T细胞克隆的互补决定区2(CDR2)和CDR3的9-mer合成TCR肽用于从免疫MS患者中分离抗独特型T细胞系。所得的TCR特异性T细胞系仅表达CD8表型,并优先识别CDR3肽。发现CDR3特异性T细胞系可特异性裂解自体免疫MBP反应性T细胞克隆。这些发现表明,CDR3特异性T细胞代表由T细胞疫苗接种诱导的抗独特型T细胞群体。相反,CDR2肽的免疫原性较低,并且包含隐蔽的决定簇,因为CDR2特异性T细胞系无法识别肽序列所源自的自体免疫T细胞克隆。该研究对我们对自身免疫性T细胞的体内独特型调节以及T细胞疫苗接种的调节机制的理解具有重要意义。

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