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自身免疫性 T 细胞受体自我识别的结构基础。

Structural basis for self-recognition by autoimmune T-cell receptors.

机构信息

Department of Antibody Engineering, Genentech, South San Francisco, CA, USA.

出版信息

Immunol Rev. 2012 Nov;250(1):32-48. doi: 10.1111/imr.12002.

Abstract

T-cell receptors (TCRs) recognize peptides presented by major histocompatibility complex molecules (pMHC) to discriminate between foreign and self-antigens. Whereas T-cell recognition of foreign peptides is essential for protection against microbial pathogens, recognition of self-peptides by T cells that have escaped negative selection in the thymus can lead to autoimmune disease. Structural studies of autoimmune TCR-pMHC complexes have provided insights into the mechanisms underlying self-recognition and escape from thymic deletion. Two broad categories of self-reactive TCRs can be clearly distinguished: (i) TCRs with altered binding topologies to self-pMHC and (ii) TCRs that bind self-pMHC in the canonical diagonal orientation, but where there are structural defects or suboptimal anchors in the self-ligand. For both categories, however, the overall stability of the autoimmune TCR-pMHC complex is markedly reduced compared to anti-microbial complexes, allowing the autoreactive T cells to evade negative selection, yet retain the ability to be activated by self-antigens in target organs. Additionally, the structures provide insights into TCR cross-reactivity, which can contribute to autoimmunity by increasing the likelihood of self-pMHC recognition. Efforts are now underway to understand the impact of structural alterations in autoimmune TCR-pMHC complexes on higher order assemblies involved in TCR signaling, as well as on immunological synapse formation.

摘要

T 细胞受体 (TCRs) 通过识别主要组织相容性复合物分子 (pMHC) 呈递的肽段来区分外来和自身抗原。虽然 T 细胞对外来肽段的识别对于抵御微生物病原体至关重要,但在胸腺中逃避负选择的 T 细胞识别自身肽段可能导致自身免疫性疾病。自身免疫性 TCR-pMHC 复合物的结构研究为理解自身识别和逃避胸腺删除的机制提供了线索。可以清楚地区分两类广泛的自身反应性 TCR:(i) TCR 与自身 pMHC 的结合拓扑结构发生改变,和 (ii) TCR 以经典的对角方式与自身 pMHC 结合,但自身配体存在结构缺陷或非最佳锚定。然而,对于这两种类别,与抗微生物复合物相比,自身免疫性 TCR-pMHC 复合物的整体稳定性显著降低,这使得自身反应性 T 细胞能够逃避负选择,但仍保留被靶器官中的自身抗原激活的能力。此外,这些结构提供了对 TCR 交叉反应性的深入了解,这可能通过增加自身 pMHC 识别的可能性而导致自身免疫。目前正在努力理解自身免疫性 TCR-pMHC 复合物中的结构改变对涉及 TCR 信号转导的更高阶组装以及免疫突触形成的影响。

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