Structural requirements of peptide and MHC for DR(alpha, beta 1*0401)-restricted T cell antigen recognition
J M McNicholl1, W C Whitworth, F Oftung
1Immunology Branch, Centers for Disease Control and Prevention, Atlanta, GA 30333, USA.
Insights
This study reveals key interactions between Mycobacterium leprae peptide 38-50 and the DR alpha beta 1*0401 binding site, highlighting pocket 4
Area of Science:
- Immunology
- Molecular Biology
- Structural Biology
Background:
- T cell recognition is crucial for adaptive immunity.
- MHC class II molecules present peptides to T cells.
- DR alpha beta 1*0401 is a specific MHC class II molecule.
Purpose of the Study:
- To identify functionally important regions of the DR alpha beta 1*0401 peptide binding site.
- To model peptide binding to DR alpha beta 1*0401.
- To analyze T cell recognition and peptide binding of Mycobacterium leprae (ML) peptides.
Main Methods:
- Amino acid substitutions in ML peptide 38-50 and DR alpha beta 1*0401 binding site.
- Peptide binding assays.
- T cell proliferation assays.
- Computer modeling.
Main Results:
- ML peptide 38-50 binds specifically to DR alpha beta 1*0401.
- Residues 39F, 42E, and 44D of ML38-50 interact with pockets 1, 4, and 6 of the binding site.
- DR alpha beta 1*0401 pocket 4 is critical for binding of ML38-50 and other overlapping peptides.
- Pocket 4 dominantly influences T cell recognition of multiple DR alpha beta 1*0401-binding peptides.
Conclusions:
- The study provides a model for peptide binding to DR alpha beta 1*0401.
- Specific pockets within the MHC binding site play dominant roles in T cell recognition.
- Individual peptide properties influence MHC-peptide interactions and T cell responses.
Abstract:
We identified functionally important regions of the DR(alpha, beta 1*0401) peptide binding site and present a model of bound peptide. DR(alpha, beta 1*0401)-restricted T cell recognition and peptide binding of Mycobacterium leprae (ML) peptide 38-50 and overlapping peptides from the 18-kDa heat-shock protein were analyzed. ML38-50 is unusual in its restricted binding pattern, binding to only one of five DR4 subtypes and no other DR molecules tested. Amino acid substitutions were introduced into ML38-50 and the DR(alpha, beta 1*0401) peptide binding site at positions likely to influence peptide-MHC or peptide- or MHC-TCR interactions. Peptide binding, T cell proliferation, and computer modeling studies suggest that residues 39F, 42E, and 44D of ML38-50 interact with pockets 1, 4, and 6, respectively, of the peptide binding site. Only DR(alpha, beta 1*0401) substitutions at residues in pockets 4 or 7 prevented binding of ML38-50, while multiple substitutions at other positions negatively affected its T cell recognition. In contrast, T cell recognition of some high affinity ML peptides that overlapped ML38-50, and contained N-terminal extensions, was only abolished with pocket 4 substitutions. An inverse correlation of peptide affinity for DR(alpha, beta 1*0401) with negative effects of MHC substitutions on T cell recognition of the overlapping ML peptides was observed. Thus, some regions, such as pocket 4, dominantly influence T cell recognition of multiple DR(alpha, beta 1*0401)-binding peptides. However, each DR(alpha, beta 1*0401)-binding peptide appears to have unique properties that determine the outcome of its MHC-peptide interactions and the relative importance of other polymorphic pockets.
More Related Videos
Related Concept Videos
Antigens Involved in Adaptive Immunity
Complete Antigens
Complete antigens possess both immunogenicity and reactivity.
Diversity of Antigen Receptors
Before encountering any antigen, lymphocytes express these receptors. On B cells, the antigen receptor is a membrane-bound antibody molecule called BCR; on T cells, it is a T cell receptor or TCR. B and T cell receptors are composed of two...
Antigen Processing Pathways
MHC Class I: Presenting Endogenous...
T Cell Activation and Clonal Selection
Naive T cells that have not yet encountered an antigen express two primary CD...
B Cell Activation and Differentiation
When naive B cells encounter a specific antigen that can bind to the B cell receptor (BCR) on their surface, they undergo sensitization to respond to the antigen's presence. Sensitization begins with...


