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DNA 折纸术展示了单个 pMHC 作为 T 细胞抗原的独特刺激能力。

DNA origami demonstrate the unique stimulatory power of single pMHCs as T cell antigens.

机构信息

Institute of Applied Physics, TU Wien, 1040 Vienna, Austria.

Center for Pathophysiology, Infectiology and Immunology, Institute for Hygiene and Applied Immunology, Medical University of Vienna, 1090 Vienna, Austria.

出版信息

Proc Natl Acad Sci U S A. 2021 Jan 26;118(4). doi: 10.1073/pnas.2016857118.

Abstract

T cells detect with their T cell antigen receptors (TCRs) the presence of rare agonist peptide/MHC complexes (pMHCs) on the surface of antigen-presenting cells (APCs). How extracellular ligand binding triggers intracellular signaling is poorly understood, yet spatial antigen arrangement on the APC surface has been suggested to be a critical factor. To examine this, we engineered a biomimetic interface based on laterally mobile functionalized DNA origami platforms, which allow for nanoscale control over ligand distances without interfering with the cell-intrinsic dynamics of receptor clustering. When targeting TCRs via stably binding monovalent antibody fragments, we found the minimum signaling unit promoting efficient T cell activation to consist of two antibody-ligated TCRs within a distance of 20 nm. In contrast, transiently engaging antigenic pMHCs stimulated T cells robustly as well-isolated entities. These results identify pairs of antibody-bound TCRs as minimal receptor entities for effective TCR triggering yet validate the exceptional stimulatory potency of single isolated pMHC molecules.

摘要

T 细胞通过其 T 细胞抗原受体 (TCR) 检测抗原呈递细胞 (APC) 表面上罕见的激动剂肽/MHC 复合物 (pMHC) 的存在。尽管细胞外配体结合如何引发细胞内信号传导仍知之甚少,但 APC 表面上的空间抗原排列已被认为是一个关键因素。为了研究这一点,我们基于横向可移动功能化 DNA 折纸平台设计了一种仿生界面,该界面允许在不干扰受体聚类细胞固有动力学的情况下对配体距离进行纳米级控制。当通过稳定结合单价抗体片段靶向 TCR 时,我们发现促进有效 T 细胞激活的最小信号单元由两个距离为 20nm 的抗体连接的 TCR 组成。相比之下,瞬时结合抗原性 pMHC 也能强烈刺激 T 细胞。这些结果确定了一对抗体结合的 TCR 作为有效 TCR 触发的最小受体实体,但验证了单个分离的 pMHC 分子的特殊刺激效力。

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