Stability screening of arrays of major histocompatibility complexes on combinatorially encoded flow cytometry beads

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Abstract

The binding and stabilization capacity of potential T cell epitopes to class I MHC molecules form the basis for their immunogenicity and provide fundamental insight into factors that dictate cellular immune responses. We have developed a versatile high throughput cell-free method to measure MHC stability by capturing a variety of MHC products on the surface of streptavidin-coated particles followed by flow cytometry analysis. Arrays of peptide-MHC combinations, generated by exchanging conditional ligand-loaded MHC, could be probed in a single experiment, thus combining the molecular precision of biochemically purified MHCs with high content multiparametric flow cytometry-based assays. Semiquantitative determination of the peptide affinity for the restriction element could also be accomplished through competition experiments using this bead-based assay. Furthermore, the generated peptide-MHC reagents could directly be applied to antigen-specific CD8 + T lymphocyte analysis. The combinatorial labeling of beads allowed straightforward identification by their unique fluorescent signatures and provided a convenient means for extended assay multiplexing. © 2011 by The American Society for Biochemistry and Molecular Biology, Inc.

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Chew, S. L., Or, M. Y., Chang, C. X. L., Gehring, A. J., Bertoletti, A., & Grotenbreg, G. M. (2011). Stability screening of arrays of major histocompatibility complexes on combinatorially encoded flow cytometry beads. Journal of Biological Chemistry, 286(32), 28466–28475. https://doi.org/10.1074/jbc.M111.262691

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