Allele-specific alterations in the peptidome underlie the joint association of HLA-A*29:02 and Endoplasmic Reticulum Aminopeptidase 2 (ERAP2) with Birdshot Chorioretinopathy

Alejandro Sanz-Bravo, Adrian Martin-Esteban, Jonas J W Kuiper, Marina García-Peydró, Eilon Barnea, Arie Admon, José A López de Castro

    Research output: Contribution to journalArticleAcademicpeer-review

    Abstract

    Virtually all patients of the rare inflammatory eye disease birdshot chorioretinopathy (BSCR) carry the HLA-A*29:02 allele. BSCR is also associated with endoplasmic reticulum aminopeptidase 2 (ERAP2), an enzyme involved in processing HLA class I ligands, thus implicating the A*29:02 peptidome in this disease. To investigate the relationship between both risk factors we employed label-free quantitative mass spectrometry to characterize the effects of ERAP2 on the A*29:02-bound peptidome. An ERAP2-negative cell line was transduced with lentiviral constructs containing GFP-ERAP2 or GFP alone, and the A*29:02 peptidomes from both transduced cells were compared. A similar analysis was performed with two additional A*29:02-positive, ERAP1-concordant, cell lines expressing or not ERAP2. In both comparisons the presence of ERAP2 affected the following features of the A*29:02 peptidome: 1) Length, with increased amounts of peptides >9-mers, and 2) N-terminal residues, with less ERAP2-susceptible and more hydrophobic ones. The paradoxical effects on peptide length suggest that unproductive binding to ERAP2 might protect some peptides from ERAP1 over-trimming. The influence on N-terminal residues can be explained by a direct effect of ERAP2 on trimming, without ruling out and improved processing in concert with ERAP1. The alterations in the A*29:02 peptidome suggest that the association of ERAP2 with BSCR is through its effects on peptide processing. These differ from those on the ankylosing spondylitis-associated HLA-B*27. Thus, ERAP2 alters the peptidome of distinct HLA molecules as a function of their specific binding preferences, influencing different pathological outcomes in an allele-dependent way.

    Original languageEnglish
    Pages (from-to)1564-1577
    Number of pages14
    JournalMolecular & Cellular Proteomics
    Volume17
    Issue number8
    Early online date2018
    DOIs
    Publication statusPublished - Aug 2018

    Keywords

    • Journal Article
    • Cell Line
    • Genetic Predisposition to Disease
    • Aminopeptidases/chemistry
    • Humans
    • Birdshot Chorioretinopathy
    • Peptides/metabolism
    • Chorioretinitis/genetics
    • Alleles
    • Hydrophobic and Hydrophilic Interactions
    • Proteome/genetics
    • Ligands
    • HLA-A Antigens/genetics
    • Enzymes
    • ERAP2
    • Peptides
    • Antigen processing
    • Birdshot chorioretinopathy
    • Inflammation
    • HLA-A*29:02
    • Immunology
    • Mass Spectrometry

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