A highly tilted binding mode by a self-reactive T cell receptor results in altered engagement of peptide and MHC

Author:

Sethi Dhruv K.1,Schubert David A.1,Anders Anne-Kathrin11,Heroux Annie2,Bonsor Daniel A.3,Thomas Chantz P.1,Sundberg Eric J.3,Pyrdol Jason1,Wucherpfennig Kai W.11

Affiliation:

1. Department of Cancer Immunology and AIDS, Dana-Farber Cancer Institute, and Program in Immunology, Harvard Medical School, Boston, MA 02115

2. Department of Biology, Brookhaven National Laboratory, Upton, NY 11973

3. Boston Biomedical Research Institute, Watertown, MA 02472

Abstract

Self-reactive T cells that escape elimination in the thymus can cause autoimmune pathology, and it is therefore important to understand the structural mechanisms of self-antigen recognition. We report the crystal structure of a T cell receptor (TCR) from a patient with relapsing-remitting multiple sclerosis that engages its self-peptide–major histocompatibility complex (pMHC) ligand in an unusual manner. The TCR is bound in a highly tilted orientation that prevents interaction of the TCR-α chain with the MHC class II β chain helix. In this structure, only a single germline-encoded TCR loop engages the MHC protein, whereas in most other TCR-pMHC structures all four germline-encoded TCR loops bind to the MHC helices. The tilted binding mode also prevents peptide contacts by the short complementarity-determining region (CDR) 3β loop, and interactions that contribute to peptide side chain specificity are focused on the CDR3α loop. This structure is the first example in which only a single germline-encoded TCR loop contacts the MHC helices. Furthermore, the reduced interaction surface with the peptide may facilitate TCR cross-reactivity. The structural alterations in the trimolecular complex are distinct from previously characterized self-reactive TCRs, indicating that there are multiple unusual ways for self-reactive TCRs to bind their pMHC ligand.

Publisher

Rockefeller University Press

Subject

Immunology,Immunology and Allergy

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