Sun Yi, Pumroy Ruth Anne, Mallik Leena, Chaudhuri Apala, Wang Chloe, Hwang Daniel, Danon Julia N, Goli Kimia Dasteh, Moiseenkova-Bell Vera, Sgourakis Nikolaos G
bioRxiv. 2024 Aug 7:2024.08.05.606663. doi: 10.1101/2024.08.05.606663.
Class I major histocompatibility complex (MHC-I) proteins play a pivotal role in adaptive immunity by displaying epitopic peptides to CD8+ T cells. The chaperones tapasin and TAPBPR promote the selection of immunogenic antigens from a large pool of intracellular peptides. Interactions of chaperoned MHC-I molecules with incoming peptides are transient in nature, and as a result, the precise antigen proofreading mechanism remains elusive. Here, we leverage a high-fidelity TAPBPR variant and conformationally stabilized MHC-I, to determine the solution structure of the human antigen editing complex bound to a peptide decoy by cryogenic electron microscopy (cryo-EM) at an average resolution of 3.0 Å. Antigen proofreading is mediated by transient interactions formed between the nascent peptide binding groove with the P2/P3 peptide anchors, where conserved MHC-I residues stabilize incoming peptides through backbone-focused contacts. Finally, using our high-fidelity chaperone, we demonstrate robust peptide exchange on the cell surface across multiple clinically relevant human MHC-I allomorphs. Our work has important ramifications for understanding the selection of immunogenic epitopes for T cell screening and vaccine design applications.
I类主要组织相容性复合体(MHC-I)蛋白通过向CD8+T细胞呈递表位肽在适应性免疫中发挥关键作用。伴侣蛋白塔帕辛(tapasin)和TAPBPR促进从大量细胞内肽中选择免疫原性抗原。伴侣蛋白辅助的MHC-I分子与进入的肽之间的相互作用本质上是短暂的,因此精确的抗原校对机制仍然难以捉摸。在这里,我们利用一种高保真TAPBPR变体和构象稳定的MHC-I,通过低温电子显微镜(cryo-EM)以3.0Å的平均分辨率确定与肽诱饵结合的人类抗原编辑复合体的溶液结构。抗原校对由新生肽结合槽与P2/P3肽锚之间形成的短暂相互作用介导,其中保守的MHC-I残基通过以主链为重点的接触稳定进入的肽。最后,使用我们的高保真伴侣蛋白,我们证明了在多种临床相关的人类MHC-I同种异型的细胞表面上存在强大的肽交换。我们的工作对于理解用于T细胞筛选和疫苗设计应用的免疫原性表位的选择具有重要意义。