Abstract

HLA-B27 is a class I major histocompatibility (MHC-I) allele that confers susceptibility to the rheumatic disease ankylosing spondylitis (AS) by an unknown mechanism. ERAP1 is an aminopeptidase that trims peptides in the endoplasmic reticulum for binding to MHC-I molecules. ERAP1 shows genetic epistasis with HLA-B27 in conferring susceptibility to AS. Male HLA-B27 transgenic rats develop arthritis and serve as an animal model of AS, whereas female B27 transgenic rats remain healthy. We used large scale quantitative mass spectrometry to identify over 15,000 unique HLA-B27 peptide ligands, isolated after immunoaffinity purification of the B27 molecules from the spleens of HLA-B27 transgenic rats. Heterozygous deletion of Erap1, which reduced the Erap1 level to less than half, had no qualitative or quantitative effects on the B27 peptidome. Homozygous deletion of Erap1 affected approximately one-third of the B27 peptidome but left most of the B27 peptidome unchanged, suggesting the possibility that some of the HLA-B27 immunopeptidome is not processed in the presence of Erap1. Deletion of Erap1 was permissive for the AS-like phenotype, increased mean peptide length and increased the frequency of C-terminal hydrophobic residues and of N-terminal Ala, Ser, or Lys. The presence of Erap1 increased the frequency of C-terminal Lys and Arg, of Glu and Asp at intermediate residues, and of N-terminal Gly. Several peptides of potential interest in AS pathogenesis, previously identified in human cell lines, were isolated. However, rats susceptible to arthritis had B27 peptidomes similar to those of non-susceptible rats, and no peptides were found to be uniquely associated with arthritis. Whether specific B27-bound peptides are required for AS pathogenesis remains to be determined. Data are available via ProteomeXchange with identifier PXD005502.

Highlights

  • From the ‡Department of Biology, Technion-Israel Institute of Technology, Haifa 32000, Israel; §Department of Internal Medicine, University of Texas Southwestern Medical Center at Dallas, Dallas, Texas 75390-8884; ¶Department of Biochemistry, University of Texas Southwestern Medical Center at Dallas, Dallas, Texas 75390-8816; ʈNIAMS, National Institutes of Health, Bethesda, Maryland 20892-1560

  • HLA-B27 Peptidome in Vivo—As noted in the Introduction, a large catalogue of HLA-B27-bound peptides has been developed from numerous studies of human cell lines [36, 49, 57,58,59,60,61,62,63,64, 87], including post-translationally modified B27 peptides [87,88,89,90,91]

  • Erap1 Is Not Necessary for Spondyloarthritis in Rats—The genetic linkage between ERAP1 and ankylosing spondylitis (AS) has been firmly established in humans [19, 20]

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Summary

The abbreviations used are

B27, HLA-B27; AS, ankylosing spondylitis; SNP, single nucleotide polymorphism; ZFN, zinc finger nuclease; ER, endoplasmic reticulum: ERAP1 and ERAP2 (human) and Erap (murine), ER aminopeptidase associated with antigen processing. The protective ERAP1 haplotype showed lower activity and less efficient peptide trimming and was associated with peptidomes conferring lower molecular stability to the B27 molecules. Experiments with pairs of ERAP1 alleles cloned from AS patients and healthy controls and transfected into cells lacking endogenous ERAP1 seemed to show the opposite result, with ERAP1 allelic pairs from AS patients showing inefficient trimming and less surface expression of properly folded B27 molecules [46] Both the quantity and quality of peptides available in the ER to bind to HLA-B27 influence the biology of B27 [52], and these in turn are strongly affected by the action of ERAP1. The effect of endogenous Erap deletion on the HLA-B27 peptidome and on the development of spondyloarthritis

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