The structural basis of T‐cell allorecognition
- 6 January 2004
- journal article
- review article
- Published by Wiley in Tissue Antigens
- Vol. 63 (2) , 101-108
- https://doi.org/10.1111/j.1399-0039.2004.00188.x
Abstract
Abstract: Foreign allogeneic major histocompatibility complex (MHC) class I and class II molecules elicit an exceptionally vigorous T‐cell response. A small component of the alloresponse comprises CD4+ T cells that recognize allogeneic MHC indirectly after processing into peptide fragments that are bound and presented by self‐MHC class II. The majority of alloreactive T cells directly recognize intact allogeneic MHC molecules expressed on foreign cells. Some alloreactive T‐cell interactions with allogeneic MHC molecules are indifferent to the bound peptide, but evidence suggests that most show specificity to peptide. The vigor and diversity of the direct alloreactive T‐cell response can therefore be explained by summation of numerous responses to each of the peptides in the novel set bound by allogeneic MHC molecules. Structural studies definitively show that the overall mechanism of T‐cell receptor (TCR) recognition of self‐MHC and allogeneic MHC molecules is similar. Many alloreactive T cells recognize several different combinations of MHC and bound peptide that do not necessarily possess structural homology. Flexibility within the TCR structure allows adaptation to the different contact surfaces. Crossreactivity seems to be an intrinsic property of the TCR required, because a single TCR must possess the ability to interact with both self‐MHC during positive selection and at least one combination of foreign antigenic peptide presented by self‐MHC. Recognition of allogeneic MHC molecules is an inadvertent consequence of the need for TCR crossreactivity.Keywords
This publication has 70 references indexed in Scilit:
- CDR3 loop flexibility contributes to the degeneracy of TCR recognitionNature Immunology, 2003
- How Many Thymocytes Audition for Selection?The Journal of Experimental Medicine, 1997
- Cross‐reactive memory T cells for Epstein‐Barr virus augment the alloresponse to common human leukocyte antigens: degenerate recognition of major histocompatibility complex‐bound peptide by T cells and its role in alloreactivityEuropean Journal of Immunology, 1997
- The MHC Reactivity of the T Cell Repertoire Prior to Positive and Negative SelectionCell, 1997
- The Biochemistry and Cell Biology of Antigen Processing and PresentationAnnual Review of Immunology, 1993
- Predominant naturally processed peptides bound to HLA-DR1 are derived from MHC-related molecules and are heterogeneous in sizeNature, 1992
- A viral peptide can mimic an endogenous peptide for allorecognition of a major histocompatibility complex class I productEuropean Journal of Immunology, 1992
- Characterization of Peptides Bound to the Class I MHC Molecule HLA-A2.1 by Mass SpectrometryScience, 1992
- MHC class II structure, occupancy and surface expression determined by post-endoplasmic reticulum antigen bindingNature, 1991
- High determinant density may explain the phenomenon of alloreactivityImmunology Today, 1984