抗独特型CD4+ T细胞系识别的I-E(d)-限制性肽的表征

H Masaki, S Yamane, K Irimajiri, A Horiuchi, J Yamaguchi, R Suzuki, I Kurane
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引用次数: 0

摘要

我们之前报道了一种CD3+ CD4+ CD8- T细胞系J-2R,它以I-E(d)限制的方式特异性识别J558个抗α(1- >3)葡聚糖抗体的个体独特体(IdI)。J-2R对J558 id衍生肽有增殖反应;然而,肽唤起J-2R增殖的能力是不同的。在本研究中,我们利用M104E idii衍生肽M88-105在竞争实验中研究了J558 idii衍生肽与I-E(d)分子之间的相互作用。M88-105抑制J558诱导的J-2R细胞增殖。此外,与J88-105诱导的增殖相比,M88-105对J92-109和J96-105诱导的增殖具有较低的抑制肽/抗原肽比。因此,18-mer多肽J88-105的框架向c端转移和n端氨基酸残基的缺失使多肽更容易受到M88-105的抑制。J- 2r T细胞受体(TcR)测序显示,J- 2r使用TcR、V α 1、J α 44;V 15 D 1 J 1.5。这些结果表明,J88-105、J92-109和J96-105肽直接与I-E(d)分子结合,J558 id衍生肽激活J-2R的能力取决于其与I-E(d)分子的亲和力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Characterization of the I-E(d)--restricted peptide recognized by an anti-idiotypic CD4+ T cell line.

We have previously reported a CD3+ CD4+ CD8- T cell line, J-2R which specifically recognized J558 individual idiotope (IdI) of anti-alpha (1-->3) dextran antibodies in an I-E(d) restricted manner. The J-2R proliferated in response to J558 IdI-derived peptides; however, the ability of the peptides to evoke the proliferation of J-2R was different. In the present study, we investigated the interaction between J558 IdI-derived peptides and I-E(d) molecules in competition experiments using a M104E IdI-derived peptide, M88-105. The M88-105 inhibited the proliferation of J-2R induced by J558 IdI-derived peptides. Furthermore, the proliferation induced by the peptides J92-109 and J96-105 was inhibited by the M88-105 at much lower inhibitor/antigenic peptide ratios, compared to the proliferation induced by the J88-105. Thus, shift of the framework to C-terminus and deletion of N-terminus amino acid residues from the 18-mer peptide J88-105 made the peptides more susceptible to the inhibition by the M88-105. Sequencing of the J-2R T cell receptor (TcR) revealed that J-2R used TcR, V alpha 1, J alpha 44; V beta 15, D beta 1, J beta 1.5. These results suggest that the peptides, J88-105, J92-109 and J96-105, directly bind to I-E(d) molecules, and that the capacity of J558 IdI-derived peptides to activate J-2R depends on the affinity to the I-E(d) molecules.

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