Department of Chemistry and Biochemistry, University of Notre Dame, Notre Dame, Indiana 46556, USA.
J Biol Chem. 2013 Aug 23;288(34):24372-81. doi: 10.1074/jbc.M113.490664. Epub 2013 Jul 8.
T cells use the αβ T cell receptor (TCR) to recognize antigenic peptides presented by class I major histocompatibility complex proteins (pMHCs) on the surfaces of antigen-presenting cells. Flexibility in both TCRs and peptides plays an important role in antigen recognition and discrimination. Less clear is the role of flexibility in the MHC protein; although recent observations have indicated that mobility in the MHC can impact TCR recognition in a peptide-dependent fashion, the extent of this behavior is unknown. Here, using hydrogen/deuterium exchange, fluorescence anisotropy, and structural analyses, we show that the flexibility of the peptide binding groove of the class I MHC protein HLA-A*0201 varies significantly with different peptides. The variations extend throughout the binding groove, impacting regions contacted by TCRs as well as other activating and inhibitory receptors of the immune system. Our results are consistent with statistical mechanical models of protein structure and dynamics, in which the binding of different peptides alters the populations and exchange kinetics of substates in the MHC conformational ensemble. Altered MHC flexibility will influence receptor engagement, impacting conformational adaptations, entropic penalties associated with receptor recognition, and the populations of binding-competent states. Our results highlight a previously unrecognized aspect of the "altered self" mechanism of immune recognition and have implications for specificity, cross-reactivity, and antigenicity in cellular immunity.
T 细胞使用 αβ T 细胞受体 (TCR) 识别抗原呈递细胞表面 I 类主要组织相容性复合体蛋白 (pMHC) 呈递的抗原肽。TCR 和肽的灵活性在抗原识别和区分中起着重要作用。MHC 蛋白的灵活性的作用不太明确;尽管最近的观察表明 MHC 的流动性可以以依赖肽的方式影响 TCR 的识别,但这种行为的程度尚不清楚。在这里,我们使用氘/氢交换、荧光各向异性和结构分析表明,I 类 MHC 蛋白 HLA-A*0201 的肽结合槽的灵活性因不同的肽而有很大差异。这些变化延伸到整个结合槽,影响 TCR 接触的区域以及免疫系统的其他激活和抑制受体。我们的结果与蛋白质结构和动力学的统计力学模型一致,其中不同肽的结合改变了 MHC 构象整体中亚态的群体和交换动力学。改变的 MHC 灵活性将影响受体结合,影响构象适应、与受体识别相关的熵罚以及结合能力状态的群体。我们的结果突出了免疫识别的“改变自身”机制的一个以前未被认识到的方面,并对细胞免疫中的特异性、交叉反应性和抗原性有影响。