Structural basis of the TCR-pHLA complex provides insights into the unconventional recognition of CDR3β in TCR cross-reactivity and alloreactivity

Dan San , Jun Lei , Yang Liu , Baowei Jing, Xiang Ye, Pengcheng Wei, Chonil Paek, Yi Yang, Jin Zhou, Peng Chen, Hongjian Wang, Yongshun Chen, Lei Yin
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Abstract

Evidence shows that some class I human leucocyte antigen (HLA) alleles are related to durable HIV controls. The T18A TCR, which has the alloreactivity between HLA-B∗42:01 and HLA-B∗81:01 and the cross-reactivity with different antigen mutants, can sustain long-term HIV controls. Here the structural basis of the T18A TCR binding to the immunodominant HIV epitope TL9 (TPQDLNTML180-188) presented by HLA-B∗42:01 was determined and compared to T18A TCR binding to the TL9 presented by the allo-HLA-B∗81:01. For differences between HLA-B∗42:01 and HLA-B∗81:01, the CDR1α and CDR3α loops adopt a small rearrangement to accommodate them. For different conformations of the TL9 presented by different HLA alleles, not like the conventional recognition of CDR3s to interact with peptide antigens, CDR3β of the T18A TCR shifts to avoid the peptide antigen but intensively recognizes the HLA only, which is different with other conventional TCR structures. Featured sequence pairs of CDR3β and HLA might account for this and were additionally found in multiple other diseases indicating the popularity of the unconventional recognition pattern which would give insights into the control of diseases with epitope mutating such as HIV.

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TCR-pHLA复合物的结构基础为CDR3β在TCR交叉反应性和同种反应性中的非常规识别提供了见解。
有证据表明,一些I类人类白细胞抗原(HLA)等位基因与持久的HIV控制有关。T18A TCR具有HLA-B*42:01和HLA-B*81:01之间的同种反应性以及与不同抗原突变体的交叉反应性,可以维持长期的HIV控制。在此,确定了T18A TCR与HLA-B*42:01呈递的免疫显性HIV表位TL9(TPQDLNTML180-188)结合的结构基础,并将其与T18A TCR与allo-HLA-B*81:01呈递的TL9结合进行了比较。对于HLA-B*42:01和HLA-B*81:01之间的差异,CDR1α和CDR3α环采用小的重排来适应它们。对于不同HLA等位基因呈现的TL9的不同构象,与传统的CDR3与肽抗原相互作用的识别不同,T18A TCR的CDR3β移位以避开肽抗原,但仅强烈识别HLA,这与其他传统TCR结构不同。CDR3β和HLA的特征序列对可能解释了这一点,并且在多种其他疾病中也发现了这种特征序列对,这表明非常规识别模式的流行,这将为控制具有表位突变的疾病(如HIV)提供见解。
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来源期刊
Cell insight
Cell insight Neuroscience (General), Biochemistry, Genetics and Molecular Biology (General), Cancer Research, Cell Biology
CiteScore
2.70
自引率
0.00%
发文量
0
审稿时长
35 days
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