Drug hypersensitivity caused by alteration of the MHC-presented self-peptide repertoire

Author:

Ostrov David A.1,Grant Barry J.2,Pompeu Yuri A.3,Sidney John4,Harndahl Mikkel5,Southwood Scott4,Oseroff Carla4,Lu Shun1,Jakoncic Jean6,de Oliveira Cesar Augusto F.7,Yang Lun8,Mei Hu8,Shi Leming8,Shabanowitz Jeffrey9,English A. Michelle9,Wriston Amanda9,Lucas Andrew10,Phillips Elizabeth10,Mallal Simon10,Grey Howard M.4,Sette Alessandro4,Hunt Donald F.9,Buus Soren5,Peters Bjoern4

Affiliation:

1. Department of Pathology, Immunology and Laboratory Medicine, University of Florida College of Medicine, Gainesville, FL 32611;

2. Department of Computational Medicine and Bioinformatics, University of Michigan, Ann Arbor, MI 48109;

3. Department of Chemistry, University of Florida, Gainesville, FL 32611;

4. Division of Vaccine Discovery, La Jolla Institute for Allergy and Immunology, La Jolla, CA 92037;

5. Laboratory of Experimental Immunology, Faculty of Health Sciences, University of Copenhagen, 2200 Copenhagen, Denmark;

6. Brookhaven National Laboratory, Upton, NY 11973;

7. Departments of Chemistry and Biochemistry, Howard Hughes Medical Institute, and Center for Theoretical Biological Physics, University of California at San Diego, La Jolla, CA 92037;

8. National Center for Toxicological Research, US Food and Drug Administration, Jefferson, AR 72079;

9. Department of Chemistry, University of Virginia, Charlottesville, VA 22901; and

10. Institute for Immunology and Infectious Diseases, Murdoch University, Perth 6150, Australia

Abstract

Idiosyncratic adverse drug reactions are unpredictable, dose-independent and potentially life threatening; this makes them a major factor contributing to the cost and uncertainty of drug development. Clinical data suggest that many such reactions involve immune mechanisms, and genetic association studies have identified strong linkages between drug hypersensitivity reactions to several drugs and specific HLA alleles. One of the strongest such genetic associations found has been for the antiviral drug abacavir, which causes severe adverse reactions exclusively in patients expressing the HLA molecular variant B*57:01. Abacavir adverse reactions were recently shown to be driven by drug-specific activation of cytokine-producing, cytotoxic CD8+T cells that required HLA-B*57:01 molecules for their function; however, the mechanism by which abacavir induces this pathologic T-cell response remains unclear. Here we show that abacavir can bind within the F pocket of the peptide-binding groove of HLA-B*57:01, thereby altering its specificity. This provides an explanation for HLA-linked idiosyncratic adverse drug reactions, namely that drugs can alter the repertoire of self-peptides presented to T cells, thus causing the equivalent of an alloreactive T-cell response. Indeed, we identified specific self-peptides that are presented only in the presence of abacavir and that were recognized by T cells of hypersensitive patients. The assays that we have established can be applied to test additional compounds with suspected HLA-linked hypersensitivities in vitro. Where successful, these assays could speed up the discovery and mechanistic understanding of HLA-linked hypersensitivities, and guide the development of safer drugs.

Publisher

Proceedings of the National Academy of Sciences

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