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首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >Distinct CDR3 conformations in TCRs determine the level of cross-reactivity for diverse antigens, but not the docking orientation.
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Distinct CDR3 conformations in TCRs determine the level of cross-reactivity for diverse antigens, but not the docking orientation.

机译:TCR中不同的CDR3构象决定了各种抗原的交叉反应水平,但没有确定对接方向。

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摘要

T cells are known to cross-react with diverse peptide MHC Ags through their alphabeta TCR. To explore the basis of such cross-reactivity, we examined the 2C TCR that recognizes two structurally distinct ligands, SIY-K(b) and alloantigen QL9-L(d). In this study we characterized the cross-reactivity of several high-affinity 2C TCR variants that contained mutations only in the CDR3alpha loop. Two of the TCR lost their ability to cross-react with the reciprocal ligand (SIY-K(b)), whereas another TCR (m67) maintained reactivity with both ligands. Crystal structures of four of the TCRs in complex with QL9-L(d) showed that CDR1, CDR2, and CDR3beta conformations and docking orientations were remarkably similar. Although the CDR3alpha loop of TCR m67 conferred a 2000-fold higher affinity for SIY-K(b), the TCR maintained the same docking angle on QL9-L(d) as the 2C TCR. Thus, CDR3alpha dictated the affinity and level of cross-reactivity, yet it did so without affecting the conserved docking orientation.
机译:已知T细胞通过其字母TCR与多种肽MHC Ag发生交叉反应。为了探索这种交叉反应的基础,我们检查了识别两个结构上不同的配体SIY-K(b)和同种抗原QL9-L(d)的2C TCR。在这项研究中,我们表征了几个仅在CDR3alpha环中包含突变的高亲和力2C TCR变体的交叉反应性。两个TCR失去了与相互配体(SIY-K(b))交叉反应的能力,而另一个TCR(m67)保持了与两个配体的反应性。与QL9-L(d)复杂的四个TCR的晶体结构表明CDR1,CDR2和CDR3beta构象和对接方向非常相似。尽管TCR m67的CDR3alpha环对SIY-K(b)的亲和力提高了2000倍,但TCR在QL9-L(d)上的对接角保持与2C TCR相同。因此,CDR3α决定了交叉反应的亲和力和水平,但它却没有影响保守的对接方向。

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