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T 细胞识别的跨学科科学。

The interdisciplinary science of T-cell recognition.

机构信息

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

出版信息

Adv Immunol. 2013;119:1-50. doi: 10.1016/B978-0-12-407707-2.00001-1.

Abstract

The recognition of peptide/MHC antigens by T-cells has continued to challenge the imagination of immunologists, biochemists, and cell biologists alike. This is at least in part because T-cell recognition connects a diversity of issues and transcends many scientific disciplines. A fundamental unsolved issue is how T-cells manage to detect even a single molecule of an agonist pMHC complex, which is vastly outnumbered by endogenous pMHCs, many of which involve the same MHC molecule. They do so although TCRs are cross-reactive and typically low in affinity when measured in isolation. Importantly, T-cell antigen recognition takes place within the contact zone between a T-cell and the antigen-presenting cell, termed the immunological synapse. This bimembrane structure sets the stage for the antigen-binding events and all subsequent molecular recognition events. There is increasing evidence that the molecular dynamics of receptor-ligand interactions are not only dependent on the intrinsic properties of the binding partners but also become transformed by cell biological parameters such as the geometrical constraints within the immune synapse, mechanical forces, and local molecular crowding. To appreciate the complete picture, we think a multidisciplinary approach is imperative, which includes genetics, biochemistry, and structure determination and also biophysical analyses and the latest molecular imaging techniques. Here, we review earlier pioneering work and also recent developments in the fascinating and interdisciplinary science of T-cell antigen recognition. In many ways, this work may present a useful "roadmap" for work in other systems of cell-cell recognition, which underlie many fundamental biological phenomenons of interest.

摘要

T 细胞对肽/MHC 抗原的识别一直以来都在挑战免疫学家、生物化学家以及细胞生物学家的想象力。这至少在一定程度上是因为 T 细胞的识别连接了多样性的问题,并超越了许多科学学科。一个尚未解决的基本问题是,T 细胞如何能够检测到仅一个激动剂 pMHC 复合物分子,而内源性 pMHC 复合物分子的数量远远超过 TCR 所能识别的数量,其中许多涉及相同的 MHC 分子。尽管 TCR 具有交叉反应性,并且在单独测量时亲和力通常较低,但它们还是做到了这一点。重要的是,T 细胞抗原识别发生在 T 细胞与抗原呈递细胞之间的接触区,称为免疫突触。这个双膜结构为抗原结合事件和所有随后的分子识别事件奠定了基础。越来越多的证据表明,受体-配体相互作用的分子动力学不仅取决于结合伴侣的固有特性,而且还会受到细胞生物学参数的改变,例如免疫突触内的几何约束、机械力和局部分子拥挤。为了全面了解这一情况,我们认为需要采用多学科方法,包括遗传学、生物化学和结构测定,以及生物物理分析和最新的分子成像技术。在这里,我们回顾了早期的开创性工作以及 T 细胞抗原识别这一迷人的跨学科科学的最新进展。在许多方面,这项工作可能为其他细胞间识别系统的工作提供了一个有用的“路线图”,这些系统是许多感兴趣的基本生物学现象的基础。

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