Structural and kinetic basis for heightened immunogenicity of T cell vaccines

Author:

Chen Ji-Li1,Stewart-Jones Guillaume2,Bossi Giovanna3,Lissin Nikolai M.4,Wooldridge Linda5,Choi Ed Man Lik1,Held Gerhard6,Dunbar P. Rod1,Esnouf Robert M.2,Sami Malkit4,Boulter Jonathan M.4,Rizkallah Pierre7,Renner Christoph6,Sewell Andrew5,van der Merwe P. Anton3,Jakobsen Bent K.4,Griffiths Gillian3,Jones E. Yvonne2,Cerundolo Vincenzo1

Affiliation:

1. Tumour Immunology Unit, Weatherall Institute of Molecular Medicine, University of Oxford, John Radcliffe Hospital, Oxford, UK, OX3 9DS

2. Division of Structural Biology, Wellcome Trust Centre for Human Genetics, University of Oxford, Oxford, UK, OX3 7BN

3. Sir William Dunn School of Pathology, University of Oxford, Oxford, UK, OX1 3RE

4. Avidex Ltd., Abingdon, Oxon, UK, OX14 4RX

5. T Cell Modulation Group, Peter Medawar Building, University of Oxford, Oxford, UK, OX1 3SY

6. I. Med. Klinik, Saarland, University Medical School, 66421 Homburg/Saar, Germany

7. CCLRC Daresbury Laboratory, Warrington, Cheshire, UK, WA4 4AD

Abstract

Analogue peptides with enhanced binding affinity to major histocompatibility class (MHC) I molecules are currently being used in cancer patients to elicit stronger T cell responses. However, it remains unclear as to how alterations of anchor residues may affect T cell receptor (TCR) recognition. We correlate functional, thermodynamic, and structural parameters of TCR–peptide–MHC binding and demonstrate the effect of anchor residue modifications of the human histocompatibility leukocyte antigens (HLA)–A2 tumor epitope NY–ESO-1157–165–SLLMWITQC on TCR recognition. The crystal structure of the wild-type peptide complexed with a specific TCR shows that TCR binding centers on two prominent, sequential, peptide sidechains, methionine–tryptophan. Cysteine-to-valine substitution at peptide position 9, while optimizing peptide binding to the MHC, repositions the peptide main chain and generates subtly enhanced interactions between the analogue peptide and the TCR. Binding analyses confirm tighter binding of the analogue peptide to HLA–A2 and improved soluble TCR binding. Recognition of analogue peptide stimulates faster polarization of lytic granules to the immunological synapse, reduces dependence on CD8 binding, and induces greater numbers of cross-reactive cytotoxic T lymphocyte to SLLMWITQC. These results provide important insights into heightened immunogenicity of analogue peptides and highlight the importance of incorporating structural data into the process of rational optimization of superagonist peptides for clinical trials.

Publisher

Rockefeller University Press

Subject

Immunology,Immunology and Allergy

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