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Peptide-binding motifs of two common equine class I MHC molecules in Thoroughbred horses

Tobias Bergmann, Mikaela Lindvall, Erin Moore, Eugene Moore, John Sidney, Donald Miller, Rebecca L. Tallmadge, Paisley T. Myers, Stacy A. Malaker, Jeffrey Shabanowitz, Nikolaus Osterrieder, Bjoern Peters, Donald F. Hunt, Douglas F. Antczak, Alessandro Sette*

*Corresponding author for this work

Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

Abstract

Quantitative peptide-binding motifs of MHC class I alleles provide a valuable tool to efficiently identify putative T cell epitopes. Detailed information on equine MHC class I alleles is still very limited, and to date, only a single equine MHC class I allele, Eqca-1*00101 (ELA-A3 haplotype), has been characterized. The present study extends the number of characterized ELA class I specificities in two additional haplotypes found commonly in the Thoroughbred breed. Accordingly, we here report quantitative binding motifs for the ELA-A2 allele Eqca-16*00101 and the ELA-A9 allele Eqca-1*00201. Utilizing analyses of endogenously bound and eluted ligands and the screening of positional scanning combinatorial libraries, detailed and quantitative peptide-binding motifs were derived for both alleles. Eqca-16*00101 preferentially binds peptides with aliphatic/hydrophobic residues in position 2 and at the C-terminus, and Eqca-1*00201 has a preference for peptides with arginine in position 2 and hydrophobic/aliphatic residues at the C-terminus. Interestingly, the Eqca-16*00101 motif resembles that of the human HLA A02-supertype, while the Eqca-1*00201 motif resembles that of the HLA B27-supertype and two macaque class I alleles. It is expected that the identified motifs will facilitate the selection of candidate epitopes for the study of immune responses in horses.
Original languageEnglish
Pages (from-to)351-358
JournalImmunogenetics
Volume69
Issue number5
Online published18 Mar 2017
DOIs
Publication statusPublished - May 2017
Externally publishedYes

Research Keywords

  • Equus caballus (Eqca)
  • MHC binding motif
  • MHC class I
  • Peptide binding
  • T cell epitope

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