Alloreactivity is limited by the endogenous peptide repertoire
- 14 February 2011
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 108 (9) , 3695-3700
- https://doi.org/10.1073/pnas.1017015108
Abstract
A significant portion of the naive T-cell repertoire is capable of responding to allogeneic MHC, violating the paradigm of self-MHC restriction. Recent studies have demonstrated convincing evidence for germ-line affinity of T-cell receptors (TCR) for MHC, providing explanation for recognition of MHC not encountered during thymic development. However, although germ-line affinity proposes all TCR have inherent affinity for MHC, most T cells are not alloreactive to a given MHC. We propose that specific recognition of endogenous presented peptides, rather than inability to interact with allogeneic MHC molecules, is the primary determinant of alloreactivity. Here, we demonstrate that alloreactive and nonalloreactive TCR differ specifically in the CDR3 sequences responsible primarily for the peptide specificity of T-cell recognition. Limitations on alloreactivity imposed by a requirement for recognition of presented peptides are directly demonstrated by expansion of the alloreactive T-cell repertoire through the addition of peptide mimotopes enabling response to two distinct allogeneic MHC by otherwise nonalloreactive T cells. Responses to peptide mimotopes were specific and depended on TCR interaction with MHC. These results demonstrate that recognition of presented endogenous peptides, and not the inability to interact with allogeneic MHC, is the primary limiter on alloreactivity. This observation reconciles the concept of an inherently MHC-reactive TCR repertoire with observed frequencies of T cells responding to allogeneic stimulation and underscores the fundamental nature of TCR recognition of ligands, where both MHC and presented peptides contribute critically to T-cell recognition.Keywords
This publication has 38 references indexed in Scilit:
- Hard wiring of T cell receptor specificity for the major histocompatibility complex is underpinned by TCR adaptabilityProceedings of the National Academy of Sciences, 2010
- Cutting Edge: Highly Alloreactive Dual TCR T Cells Play a Dominant Role in Graft-versus-Host DiseaseThe Journal of Immunology, 2009
- Many different Vβ CDR3s can reveal the inherent MHC reactivity of germline-encoded TCR V regionsProceedings of the National Academy of Sciences, 2009
- Germline-encoded amino acids in the αβ T-cell receptor control thymic selectionNature, 2009
- Natural micropolymorphism in human leukocyte antigens provides a basis for genetic control of antigen recognitionThe Journal of Experimental Medicine, 2009
- Crossreactive T Cells Spotlight the Germline Rules for αβ T Cell-Receptor Interactions with MHC MoleculesImmunity, 2008
- Specificity of T-cell alloreactivityNature Reviews Immunology, 2007
- Alloreactive T cells respond specifically to multiple distinct peptide-MHC complexesNature Immunology, 2007
- How the T Cell Repertoire Becomes Peptide and MHC SpecificCell, 2005
- Canonical structures for the hypervariable regions of T cell αβ receptorsJournal of Molecular Biology, 2000