A potential mechanism of "cross-talk" between the p55 tumor necrosis factor receptor and Fas/APO1: proteins binding to the death domains of the two receptors also bind to each other.
Open Access
- 1 March 1996
- journal article
- Published by Rockefeller University Press in The Journal of Experimental Medicine
- Vol. 183 (3) , 1271-1275
- https://doi.org/10.1084/jem.183.3.1271
Abstract
The association of specific HLA-DQ alleles with autoimmunity is correlated with discrete polymorphisms in the HLA-DQ sequence that are localized within sites suitable for peptide recognition. The polymorphism at residue 57 of the DQB1 polypeptide is of particular interest since it may play a major structural role in the formation of a salt bridge structure at one end of the peptide-binding cleft of the DQ molecules. This polymorphism at residue 57 is a recurrent feature of HLA-DQ evolution, occurring in multiple distinct allelic families, which implies a functional selection for maintaining variation at this position in the class II molecule. We directly tested the amino acid polymorphism at this site as a determinant for peptide binding and for antigen-specific T cell stimulation. We found that a single Ala-->Asp amino acid 57 substitution in an HLA-DQ3.2 molecule regulated binding of an HSV-2 VP-16-derived peptide. A complementary single-residue substitution in the peptide abolished its binding to DQ3.2 and converted it to a peptide that can bind to DQ3.1 and DQ3.3 Asp-57-positive MHC molecules. These binding studies were paralleled by specific T cell recognition of the class II-peptide complex, in which the substituted peptide abolished T cell reactivity, which was directed to the DQ3.2-peptide complex, whereas the same T cell clone recognized the substituted peptide presented by DQ3.3, a class II restriction element differing from DQ3.2 only at residue 57. This structural and functional complementarity for residue 57 and a specific peptide residue identifies this interaction as a key controlling determinant of restricted recognition in HLA-DQ-specific immune response.Keywords
This publication has 24 references indexed in Scilit:
- RIP: A novel protein containing a death domain that interacts with Fas/APO-1 (CD95) in yeast and causes cell deathCell, 1995
- Fas antigen and p55 TNF receptor signal apoptosis through distinct pathways.The Journal of Immunology, 1994
- A novel domain within the 55 kd TNF receptor signals cell deathCell, 1993
- Effect of bcl-2 on Fas antigen-mediated cell death.The Journal of Immunology, 1993
- Elimination of false positives that arise in using the two-hybrid system.1993
- A novel protein domain required for apoptosis. Mutational analysis of human Fas antigenJournal of Biological Chemistry, 1993
- Expression of BCL-2 protein enhances the survival of mouse fibrosarcoid cells in tumor necrosis factor-mediated cytotoxicity.1993
- The Pathophysiology of Tumor Necrosis FactorsAnnual Review of Immunology, 1992
- Lymphoproliferation disorder in mice explained by defects in Fas antigen that mediates apoptosisNature, 1992
- Purification of a RAS-responsive adenylyl cyclase complex from Saccharomyces cerevisiae by use of an epitope addition method.Molecular and Cellular Biology, 1988