Ma Jiaqi, Ayres Cory M, Brambley Chad A, Chandran Smita S, Rosales Tatiana J, Corcelli Steven A, Kovrigin Evgenii L, Klebanoff Christopher A, Baker Brian M
Department of Chemistry and Biochemistry, University of Notre Dame, Notre Dame, IN, USA.
Harper Cancer Research Institute, University of Notre Dame, Notre Dame, IN, USA.
Res Sq. 2024 May 29:rs.3.rs-4457195. doi: 10.21203/rs.3.rs-4457195/v1.
The inherent cross-reactivity of the T cell receptor (TCR) is balanced by high specificity, which often manifests in confounding ways not easily interpretable from static structures. We show here that TCR discrimination between an HLA-A*03:01 (HLA-A3)-restricted public neoantigen derived from mutant and its wild-type (WT) counterpart emerges from motions within the HLA binding groove that vary with the identity of the peptide's first primary anchor. The motions form a dynamic gate that in the complex with the WT peptide impedes a large conformational change required for TCR binding. The more rigid neoantigen is insusceptible to this limiting dynamic, and with the gate open, is able to transit its central tryptophan residue underneath the peptide backbone to the contralateral side of the HLA-A3 peptide binding groove, facilitating TCR binding. Our findings reveal a novel mechanism driving TCR specificity for a cancer neoantigen that is rooted in the dynamic and allosteric nature of peptide/MHC-I complexes, with implications for resolving long-standing and often confounding questions about the determinants of T cell specificity.
T细胞受体(TCR)固有的交叉反应性通过高特异性得到平衡,这种高特异性常常以难以从静态结构中解读的混淆方式表现出来。我们在此表明,TCR对源自突变体的HLA-A*03:01(HLA-A3)限制性公共新抗原与其野生型(WT)对应物之间的区分,源于HLA结合槽内随肽段首个主要锚定残基的特性而变化的运动。这些运动形成了一个动态门,在与WT肽形成的复合物中,该动态门会阻碍TCR结合所需的大的构象变化。刚性更强的新抗原不受这种限制动态的影响,并且在门打开时,能够将其中心色氨酸残基在肽主链下方转移到HLA-A3肽结合槽的对侧,从而促进TCR结合。我们的研究结果揭示了一种驱动TCR对癌症新抗原特异性的新机制,该机制源于肽/MHC-I复合物的动态和变构性质,这对于解决有关T细胞特异性决定因素的长期存在且常常令人困惑的问题具有启示意义。