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A High Throughput MHC II Binding Assay for Quantitative Analysis of Peptide Epitopes
Published on: March 25, 2014
Identification of two distinct properties of class II major histocompatibility complex-associated peptides
C A Nelson1, S J Petzold, E R Unanue
1Washington University, School of Medicine, Department of Pathology, St. Louis, MO 63110.
Insights
Peptide binding to mouse MHC class II molecule I-Ak influences complex stability. Longer peptides, including hen egg white lysozyme (HEL) sequences, form stable complexes, correlating with higher immunogenicity.
Area of Science:
- Immunology
- Molecular Biology
- Protein Chemistry
Background:
- The mouse class II major histocompatibility complex (MHC) molecule I-Ak presents peptides to T cells.
- Hen egg white lysozyme (HEL) is a model protein used in immunological studies.
- The immunodominant peptide from HEL (residues 52-61) is crucial for binding and T cell presentation.
Purpose of the Study:
- To investigate how varying peptide lengths, derived from HEL, affect the stability of complexes formed with the I-Ak molecule.
- To determine if peptide structural features, beyond the core T cell epitope, influence MHC class II complex stability and immunogenicity.
Main Methods:
- In vitro binding assays using purified I-Ak and radiolabeled HEL-derived peptides.
- Ex vivo studies with antigen-presenting cells incubated with peptides.
- Analysis of complex stability using SDS-PAGE.
Main Results:
- The core 10-mer HEL peptide (52-61) formed unstable I-Ak complexes that dissociated during SDS-PAGE.
- Peptides with additional residues at either terminus formed stable I-Ak complexes resistant to SDS/PAGE.
- Antigen-presenting cells selected for more stable HEL peptide complexes, which correlated with higher immunogenicity.
Conclusions:
- Structural features of peptides, independent of the T cell epitope, significantly alter the stability of MHC class II-peptide complexes.
- Enhanced complex stability is linked to increased peptide immunogenicity.
- These findings reveal a mechanism by which peptide processing and binding influence immune responses.
Abstract:
We have examined the interactions of various peptides with the mouse class II major histocompatibility complex molecule I-Ak. The peptides were derived from the model protein hen egg white lysozyme (HEL). The immunodominant peptide of HEL is a 10-mer, residues 52-61. Our previous work established that this sequence contains the key residues for binding and presentation to T cells. Now we show that the binding of this 10-mer sequence resulted in complexes of I-Ak and peptide that, in SDS/PAGE (without boiling the protein), rapidly dissociated from the component alpha and beta chains. The binding interactions were studied in vitro, by incubating purified I-Ak and radiolabeled peptide, or ex vivo, by using antigen-presenting cells incubated with peptides. Peptides with additional residues at either the amino or carboxyl terminus behaved dramatically differently. Complexes of I-Ak with the longer peptides were stable to SDS/PAGE. Very few amino acid additions result in the change from unstable to stable complexes. The important issue here is that when cultured with HEL, antigen-presenting cells selected the HEL peptides containing the 52-61 sequences that favored stability [Nelson, C. A., Roof, R. W., McCourt, D. W. & Unanue, E. R. (1992) Proc. Natl., Acad. Sci. USA 89, 7380-7383]. Also, from other studies, such sequences correlate with a high immunogenicity of the peptide. We conclude that there are structural features of peptides that change the stability of the class II molecule and that are independent of the "core" peptide seen by the T cells.
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