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肽-MHC(pMHC)与人类抗病毒 T 细胞受体结合会诱导 pMHC 和 CD3 结合位点之间的长程变构通讯。

Peptide-MHC (pMHC) binding to a human antiviral T cell receptor induces long-range allosteric communication between pMHC- and CD3-binding sites.

机构信息

From the W. M. Keck Laboratory for Structural Biology, University of Maryland Institute for Bioscience and Biotechnology Research, Rockville, Maryland 20850.

the Departments of Cell Biology and Molecular Genetics and.

出版信息

J Biol Chem. 2018 Oct 12;293(41):15991-16005. doi: 10.1074/jbc.RA118.003832. Epub 2018 Aug 22.

Abstract

T cells generate adaptive immune responses mediated by the T cell receptor (TCR)-CD3 complex comprising an αβ TCR heterodimer noncovalently associated with three CD3 dimers. In early T cell activation, αβ TCR engagement by peptide-major histocompatibility complex (pMHC) is first communicated to the CD3 signaling apparatus of the TCR-CD3 complex, but the underlying mechanism is incompletely understood. It is possible that pMHC binding induces allosteric changes in TCR conformation or dynamics that are then relayed to CD3. Here, we carried out NMR analysis and molecular dynamics (MD) simulations of both the α and β chains of a human antiviral TCR (A6) that recognizes the Tax antigen from human T cell lymphotropic virus-1 bound to the MHC class I molecule HLA-A2. We observed pMHC-induced NMR signal perturbations in the TCR variable (V) domains that propagated to three distinct sites in the constant (C) domains: 1) the Cβ FG loop projecting from the Vβ/Cβ interface; 2) a cluster of Cβ residues near the Cβ αA helix, a region involved in interactions with CD3; and 3) the Cα AB loop at the membrane-proximal base of the TCR. A biological role for each of these allosteric sites is supported by previous mutational and functional studies of TCR signaling. Moreover, the pattern of long-range, ligand-induced changes in TCR A6 revealed by NMR was broadly similar to that predicted by the MD simulations. We propose that the unique structure of the TCR β chain enables allosteric communication between the TCR-binding sites for pMHC and CD3.

摘要

T 细胞通过 T 细胞受体 (TCR)-CD3 复合物产生适应性免疫应答,该复合物包含非共价结合的 αβ TCR 异二聚体和三个 CD3 二聚体。在早期 T 细胞激活过程中,αβ TCR 通过肽-主要组织相容性复合物 (pMHC) 的结合首先传递到 TCR-CD3 复合物的 CD3 信号装置,但潜在的机制尚不完全清楚。可能是 pMHC 结合诱导 TCR 构象或动力学的变构变化,然后将其传递到 CD3。在这里,我们对识别人类 T 细胞嗜淋巴病毒-1 的 Tax 抗原的人抗病毒 TCR (A6) 的 α 和 β 链进行了 NMR 分析和分子动力学 (MD) 模拟,该 TCR 与 MHC 类 I 分子 HLA-A2 结合。我们观察到 pMHC 诱导的 TCR 可变 (V) 结构域中的 NMR 信号扰动,这些扰动传播到 C 结构域中的三个不同位点:1) 从 Vβ/Cβ 界面伸出的 Cβ FG 环;2) Cβ αA 螺旋附近的 Cβ 残基簇,该区域参与与 CD3 的相互作用;3) TCR 膜近端基部的 Cα AB 环。以前关于 TCR 信号的突变和功能研究支持这些变构位点中的每一个都具有生物学作用。此外,通过 NMR 揭示的 TCR A6 的长程、配体诱导的变化模式与 MD 模拟预测的模式广泛相似。我们提出,TCR β 链的独特结构允许 pMHC 和 CD3 的 TCR 结合位点之间进行变构通讯。

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