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CD1d-糖脂上的最小结合足迹是选择独特的人类NKT TCR的基础。

A minimal binding footprint on CD1d-glycolipid is a basis for selection of the unique human NKT TCR.

作者信息

Wun Kwok S, Borg Natalie A, Kjer-Nielsen Lars, Beddoe Travis, Koh Ruide, Richardson Stewart K, Thakur Meena, Howell Amy R, Scott-Browne James P, Gapin Laurent, Godfrey Dale I, McCluskey James, Rossjohn Jamie

机构信息

Australian Research Council Centre of Excellence in Structural and Functional Microbial Genomics, Department of Biochemistry and Molecular Biology, School of Biomedical Sciences, Monash University, Clayton, Victoria, Australia.

出版信息

J Exp Med. 2008 Apr 14;205(4):939-49. doi: 10.1084/jem.20072141. Epub 2008 Mar 31.

Abstract

Although it has been established how CD1 binds a variety of lipid antigens (Ag), data are only now emerging that show how alphabeta T cell receptors (TCRs) interact with CD1-Ag. Using the structure of the human semiinvariant NKT TCR-CD1d-alpha-galactosylceramide (alpha-GalCer) complex as a guide, we undertook an alanine scanning mutagenesis approach to define the energetic basis of this interaction between the NKT TCR and CD1d. Moreover, we explored how analogues of alpha-GalCer affected this interaction. The data revealed that an identical energetic footprint underpinned the human and mouse NKT TCR-CD1d-alpha-GalCer cross-reactivity. Some, but not all, of the contact residues within the Jalpha18-encoded invariant CDR3alpha loop and Vbeta11-encoded CDR2beta loop were critical for recognizing CD1d. The residues within the Valpha24-encoded CDR1alpha and CDR3alpha loops that contacted the glycolipid Ag played a smaller energetic role compared with the NKT TCR residues that contacted CD1d. Collectively, our data reveal that the region distant to the protruding Ag and directly above the F' pocket of CD1d was the principal factor in the interaction with the NKT TCR. Accordingly, although the structural footprint at the NKT TCR-CD1d-alpha-GalCer is small, the energetic footprint is smaller still, and reveals the minimal requirements for CD1d restriction.

摘要

尽管已经明确了CD1如何结合多种脂质抗原(Ag),但有关αβ T细胞受体(TCR)与CD1-Ag相互作用的相关数据才刚刚出现。我们以人类半不变自然杀伤T细胞(NKT)TCR-CD1d-α-半乳糖神经酰胺(α-GalCer)复合物的结构为指导,采用丙氨酸扫描诱变方法来确定NKT TCR与CD1d之间这种相互作用的能量基础。此外,我们还探究了α-GalCer类似物如何影响这种相互作用。数据显示,相同的能量印记是人类和小鼠NKT TCR-CD1d-α-GalCer交叉反应性的基础。在由Jα18编码的恒定互补决定区3α(CDR3α)环和由Vβ11编码的CDR2β环内,部分(而非全部)接触残基对于识别CD1d至关重要。与接触CD1d的NKT TCR残基相比,由Vα24编码的CDR1α和CDR3α环内接触糖脂抗原的残基在能量方面所起的作用较小。总体而言,我们的数据表明,远离突出抗原且直接位于CD1d的F'口袋上方的区域是与NKT TCR相互作用的主要因素。因此,尽管NKT TCR-CD1d-α-GalCer处的结构印记较小,但能量印记更小,这揭示了CD1d限制性的最低要求。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3e31/2292230/a19a22024f62/jem2050939f01.jpg

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