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PNAS Plus: How an alloreactive T-cell receptor achieves peptide and MHC specificity

机译:PNAS Plus:同种反应性T细胞受体如何实现肽和MHC特异性

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摘要

T-cell receptor (TCR) allorecognition is often presumed to be relatively nonspecific, attributable to either a TCR focus on exposed major histocompatibility complex (MHC) polymorphisms or the degenerate recognition of allopeptides. However, paradoxically, alloreactivity can proceed with high peptide and MHC specificity. Although the underlying mechanisms remain unclear, the existence of highly specific alloreactive TCRs has led to their use as immunotherapeutics that can circumvent central tolerance and limit graft-versus-host disease. Here, we show how an alloreactive TCR achieves peptide and MHC specificity. The HCV1406 TCR was cloned from T cells that expanded when a hepatitis C virus (HCV)-infected HLA-A2 individual received an HLA-A2+ liver allograft. HCV1406 was subsequently shown to recognize the HCV nonstructural protein 3 (NS3):1406–1415 epitope with high specificity when presented by HLA-A2. We show that NS3/HLA-A2 recognition by the HCV1406 TCR is critically dependent on features unique to both the allo-MHC and the NS3 epitope. We also find cooperativity between structural mimicry and a crucial peptide “hot spot” and demonstrate its role, along with the MHC, in directing the specificity of allorecognition. Our results help explain the paradox of specificity in alloreactive TCRs and have implications for their use in immunotherapy and related efforts to manipulate TCR recognition, as well as alloreactivity in general.
机译:T细胞受体(TCR)的同种异体认知通常被认为是相对非特异性的,这归因于TCR对暴露的主要组织相容性复合体(MHC)多态性的关注或对同种肽的简并识别。然而,自相矛盾的是,同种异体反应可以以高肽和MHC特异性进行。尽管尚不清楚其基本机制,但高度特异性的同种异体反应性TCR的存在已导致其用作免疫治疗剂,可以规避中枢耐受并限制移植物抗宿主病。在这里,我们显示了同种异体反应性TCR如何实现肽和MHC特异性。从HCV感染的HLA-A2 -个体接受HLA-A2 + 肝脏同种异体移植的T细胞中克隆了HCV1406 TCR。随后显示,当由HLA-A2呈递时,HCV1406可以高度特异性地识别HCV非结构蛋白3(NS3):1406-1415表位。我们表明,HCV1406 TCR对NS3 / HLA-A2的识别主要取决于同种MHC和NS3表位的独特功能。我们还发现了结构拟态与关键肽“热点”之间的协作性,并证明了其与MHC一起在指导同种异体识别特异性方面的作用。我们的结果有助于解释同种异体反应性TCR中的特异性悖论,并对其在免疫疗法中的使用以及操纵TCR识别以及相关同种异体反应的相关工作产生影响。

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