Localization of the Discontinuous Immunodominant Region Recognized by Human Anti-thyroperoxidase Autoantibodies in Autoimmune Thyroid Diseases

The discontinuous immunodominant region (IDR) recognized by autoantibodies directed against the thyroperoxidase (TPO) molecule, a major autoantigen in autoimmune thyroid diseases, has not yet been completely localized. By using peptide phage-displayed technology, we identified three critical motifs,...

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Veröffentlicht in:The Journal of biological chemistry 2003-03, Vol.278 (11), p.9560-9569
Hauptverfasser: Bresson, Damien, Cerutti, Martine, Devauchelle, Gérard, Pugnière, Martine, Roquet, Francoise, Bes, Cédric, Bossard, Carine, Chardès, Thierry, Péraldi-Roux, Sylvie
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Sprache:eng
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Zusammenfassung:The discontinuous immunodominant region (IDR) recognized by autoantibodies directed against the thyroperoxidase (TPO) molecule, a major autoantigen in autoimmune thyroid diseases, has not yet been completely localized. By using peptide phage-displayed technology, we identified three critical motifs, L X PE X D, QSYP, and E X (E/D)PPV, within selected mimotopes which interacted with the human recombinant anti-TPO autoantibody (aAb) T13, derived from an antibody phage-displayed library obtained from thyroid-infiltrating TPO-selected B cells of Graves' disease patients. Mimotope sequence alignment on the TPO molecule, together with the binding analysis of the T13 aAb on TPO mutants expressed by Chinese hamster ovary cells, demonstrated that regions 353–363, 377–386, and 713–720 from the myeloperoxidase-like domain and region 766–775 from the complement control protein-like domain are a part of the IDR recognized by the recombinant aAb T13. Furthermore, we demonstrated that these regions were involved in the binding to TPO of sera containing TPO-specific autoantibodies from patients suffering from Hashimoto's and Graves' autoimmune diseases. Identification of the IDR could lead to improved diagnosis of thyroid autoimmune diseases by engineering “mini-TPO” as a target autoantigen or designing therapeutic peptides able to block undesired autoimmune responses.
ISSN:0021-9258
1083-351X
DOI:10.1074/jbc.M211930200