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8ZV9

Complex structure of HLA2402 with recognizing SARS-CoV-2 Y453F epitope NYNYLFRLF

Replaces:  8IF1
Summary for 8ZV9
Entry DOI10.2210/pdb8zv9/pdb
DescriptorMHC class I antigen, Beta-2-microglobulin, Spike protein S1, ... (5 entities in total)
Functional Keywordssars-cov-2, mhc, complex, epitope, immune system
Biological sourceHomo sapiens (human)
More
Total number of polymer chains9
Total formula weight135922.88
Authors
Deng, S.S.,Jin, T.C.,Xu, Z.H.,Wang, M.H. (deposition date: 2024-06-11, release date: 2024-08-21, Last modification date: 2024-11-13)
Primary citationDeng, S.,Xu, Z.,Wang, M.,Hu, J.,Liu, Z.,Zhu, F.,Zheng, P.,Kombe Kombe, A.J.,Zhang, H.,Wu, S.,Jin, T.
Structural insights into immune escape at killer T cell epitope by SARS-CoV-2 Spike Y453F variants.
J.Biol.Chem., 300:107563-107563, 2024
Cited by
PubMed Abstract: CD8 T cell immunity, mediated by human leukocyte antigen (HLA) and T cell receptor (TCR), plays a critical role in conferring immune memory and protection against viral pathogens. The emergence of SARS-CoV-2 variants poses a serious challenge to the efficacy of current vaccines. Whereas numerous SARS-CoV-2 mutations associated with immune escape from CD8 T cells have been documented, the molecular effects of most mutations on epitope-specific TCR recognition remain largely unexplored. Here, we studied an HLA-A24-restricted NYN epitope (Spike) that elicits broad CD8 T cell responses in COVID-19 patients characterized by a common TCR repertoire. Four natural mutations, N450K, L452Q, L452R, and Y453F, arose within the NYN epitope and have been transmitted in certain viral lineages. Our findings indicate that these mutations have minimal impact on the epitope's presentation by cell surface HLA, yet they diminish the affinities of their respective peptide-HLA complexes (pHLAs) for NYN peptide-specific TCRs, particularly L452R and Y453F. Furthermore, we determined the crystal structure of HLA-A24 loaded with the Y453F peptide (NYNYLFRLF), and subsequently a ternary structure of the public TCR complexed to the original NYN-HLA-A24 (NYNYLYRLF). Our structural analysis unveiled that despite competent presentation by HLA, the mutant Y453F peptide failed to establish a stable TCR-pHLA ternary complex due to reduced peptide: TCR contacts. This study supports the idea that cellular immunity restriction is an important driving force behind viral evolution.
PubMed: 39002680
DOI: 10.1016/j.jbc.2024.107563
PDB entries with the same primary citation
Experimental method
X-RAY DIFFRACTION (2.6 Å)
Structure validation

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