Journal article

Hard wiring of T cell receptor specificity for the major histocompatibility complex is underpinned by TCR adaptability

SR Burrows, Z Chen, JK Archbold, FE Tynan, T Beddoe, L Kjer-Nielsen, JJ Miles, R Khanna, DJ Moss, YC Liu, S Gras, L Kostenko, RM Brennan, CS Clements, AG Brooks, AW Purcell, J McCluskey, J Rossjohn

Proceedings of the National Academy of Sciences of the United States of America | Published : 2010

Abstract

αβ T cell receptors (TCRs) are genetically restricted to corecognize peptide antigens bound to self-major histocompatibility complex (pMHC) molecules; however, the basis for this MHC specificity remains unclear. Despite the current dogma, evaluation of the TCR-pMHC-I structural database shows that the nongermline-encoded complementarity-determining region (CDR)-3 loops often contact the MHC-I, and the germline-encoded CDR1 and -2 loops frequently participate in peptide-mediated interactions. Nevertheless, different TCRs adopt a roughly conserved docking mode over the pMHC-I, in which three MHC-I residues (65, 69, and 155) are invariably contacted by the TCR in one way or another. Nonetheless..

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Grants

Funding Acknowledgements

We thank the staff at the Australian Synchrotron and at the Industrial Macromolecular Crystallography Association beamline, Advanced Photon Source, Chicago for assistance with data collection. This work was supported by the National Health and Medical Research Council of Australia and the Australian Research Council (ARC). S. R. B., J.K.A., F. E. T., and A. W. P. are supported by National Health and Medical Research Council fellowships, and T. B. is supported by a Pfizer fellowship. J.R. is supported by an ARC Federation Fellowship.