BV8S2(Vβ8.2)的互补决定区2有助于大鼠恒定自然杀伤T细胞TCR对抗原的识别。
The complementarity determining region 2 of BV8S2 (V beta 8.2) contributes to antigen recognition by rat invariant NKT cell TCR.
作者信息
Pyz Elwira, Naidenko Olga, Miyake Sachiko, Yamamura Takashi, Berberich Ingolf, Cardell Susanna, Kronenberg Mitchell, Herrmann Thomas
机构信息
Institute for Virology and Immunobiology, Würzburg University, Germany.
出版信息
J Immunol. 2006 Jun 15;176(12):7447-55. doi: 10.4049/jimmunol.176.12.7447.
Invariant NKT cells (iNKT cells) are characterized by a semi-invariant TCR comprising an invariant alpha-chain paired with beta-chains with limited BV gene usage which are specific for complexes of CD1d and glycolipid Ags like alpha-galactosylceramide (alpha-GalCer). iNKT cells can be visualized with alpha-GalCer-loaded CD1d tetramers, and the binding of mouse CD1d tetramers to mouse as well as to human iNKT cells suggests a high degree of conservation in recognition of glycolipid Ags between species. Surprisingly, mouse CD1d tetramers failed to stain a discrete cell population among F344/Crl rat liver lymphocytes, although comprised iNKT cells are indicated by IL-4 and IFN-gamma secretion after alpha-GalCer stimulation. The arising hypothesis that rat iNKT TCR recognizes alpha-GalCer only if presented by syngeneic CD1d was then tested with the help of newly generated rat and mouse iNKT TCR-transduced cell lines. Cells expressing mouse iNKT TCR reacted to alpha-GalCer presented by rat or mouse CD1d and efficiently bound alpha-GalCer-loaded mouse CD1d tetramers. In contrast, cells expressing rat iNKT TCR responded only to alpha-GalCer presented by syngeneic CD1d and bound mouse CD1d tetramers only poorly or not at all. Finally, CD1d-dependent alpha-GalCer reactivity and binding of mouse CD1d tetramers was tested for cells expressing iNKT TCR comprising either rat or mouse AV14 (Valpha14) alpha-chains and wild-type or mutated BV8S2 (Vbeta8.2) beta-chains. The results confirmed the need of syngeneic CD1d as restriction element for rat iNKT TCR and identified the CDR2 of BV8S2 as an essential site for ligand recognition by iNKT TCR.
不变自然杀伤T细胞(iNKT细胞)的特征是具有半不变的TCR,其由一个不变的α链与β链配对组成,β链的BV基因使用有限,这些β链对CD1d和糖脂抗原(如α-半乳糖神经酰胺(α-GalCer))的复合物具有特异性。iNKT细胞可用负载α-GalCer的CD1d四聚体进行可视化,小鼠CD1d四聚体与小鼠以及人类iNKT细胞的结合表明,物种间在糖脂抗原识别方面具有高度保守性。令人惊讶的是,尽管α-GalCer刺激后IL-4和IFN-γ分泌表明存在iNKT细胞,但小鼠CD1d四聚体未能对F344/Crl大鼠肝脏淋巴细胞中的离散细胞群体进行染色。随后,借助新生成的大鼠和小鼠iNKT TCR转导细胞系,对大鼠iNKT TCR仅在同基因CD1d呈递时才识别α-GalCer这一产生的假设进行了测试。表达小鼠iNKT TCR的细胞对大鼠或小鼠CD1d呈递的α-GalCer有反应,并能有效结合负载α-GalCer的小鼠CD1d四聚体。相比之下,表达大鼠iNKT TCR的细胞仅对同基因CD1d呈递的α-GalCer有反应,与小鼠CD1d四聚体的结合能力很差或根本不结合。最后,对表达包含大鼠或小鼠AV14(Valpha14)α链和野生型或突变型BV8S2(Vbeta8.2)β链的iNKT TCR的细胞进行了CD1d依赖性α-GalCer反应性和小鼠CD1d四聚体结合的测试。结果证实了同基因CD1d作为大鼠iNKT TCR的限制元件的必要性,并确定BV8S2的CDR2是iNKT TCR识别配体的关键位点。