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Author
- Besneux, Matthieu1
- Coles, Charlotte H1
- Dolton, Garry1
- Elliott, Tim1
- Gallimore, Awen1
- Godkin, Andrew1
- Greenshields-Watson, Alexander1
- Harper, Stephen1
- Hayes, Conor1
- Hibbert, Linda1
- Hock, Miriam1
- Lloyd, Angharad1
- Lupardus, Patrick1
- MacLachlan, Bruce J1
- Mason, Georgina H1
- McMurran, Catriona1
- Papakyriakou, Athanasios1
- Raman, Marine CC1
- Rizkallah, Pierre1
- Schauenburg, Andrea1
- Sewell, Andrew K1
- Szomolay, Barbara1
Keyword
- antigen recognition2
- adaptive immunity1
- cancer therapy1
- cancer-associated antigen1
- crystal structure1
- crystallography1
- immuno-oncology1
- immunotherapy1
- MAGE-A41
- melanoma antigen-A4 (MAGE-A4)1
- molecular dynamics1
- peptide flanking residues1
- peptide-human leukocyte antigen1
- peptide-human leukocyte antigen (pHLA)1
- structure-function1
- surface plasmon resonance (SPR)1
- T cell receptor1
- T cell receptor (TCR)1
- T-cell biology1
- tumor immunology1
Immunology
2 Results
- ImmunologyOpen Access
T cell receptor interactions with human leukocyte antigen govern indirect peptide selectivity for the cancer testis antigen MAGE-A4
Journal of Biological ChemistryVol. 295Issue 33p11486–11494Published online: June 12, 2020- Charlotte H. Coles
- Catriona McMurran
- Angharad Lloyd
- Miriam Hock
- Linda Hibbert
- Marine C.C. Raman
- and others
Cited in Scopus: 8T cell-mediated immunity is governed primarily by T cell receptor (TCR) recognition of peptide-human leukocyte antigen (pHLA) complexes and is essential for immunosurveillance and disease control. This interaction is generally stabilized by interactions between the HLA surface and TCR germline-encoded complementarity-determining region (CDR) loops 1 and 2, whereas peptide selectivity is guided by direct interactions with the TCR CDR3 loops. Here, we solved the structure of a newly identified TCR in complex with a clinically relevant peptide derived from the cancer testis antigen melanoma antigen-A4 (MAGE-A4). - ArticleOpen Access
Human leukocyte antigen (HLA) class II peptide flanking residues tune the immunogenicity of a human tumor-derived epitope
Journal of Biological ChemistryVol. 294Issue 52p20246–20258Published online: October 16, 2019- Bruce J. MacLachlan
- Garry Dolton
- Athanasios Papakyriakou
- Alexander Greenshields-Watson
- Georgina H. Mason
- Andrea Schauenburg
- and others
Cited in Scopus: 6CD4+ T-cells recognize peptide antigens, in the context of human leukocyte antigen (HLA) class II molecules (HLA-II), which through peptide-flanking residues (PFRs) can extend beyond the limits of the HLA binding. The role of the PFRs during antigen recognition is not fully understood; however, recent studies have indicated that these regions can influence T-cell receptor (TCR) affinity and pHLA-II stability. Here, using various biochemical approaches including peptide sensitivity ELISA and ELISpot assays, peptide-binding assays and HLA-II tetramer staining, we focused on CD4+ T-cell responses against a tumor antigen, 5T4 oncofetal trophoblast glycoprotein (5T4), which have been associated with improved control of colorectal cancer.