Generation of peptide–MHC class I complexes through UV-mediated ligand exchange

B Rodenko, M Toebes, SR Hadrup, WJE Van Esch… - Nature protocols, 2006 - nature.com
B Rodenko, M Toebes, SR Hadrup, WJE Van Esch, AM Molenaar, TNM Schumacher
Nature protocols, 2006nature.com
Major histocompatibility complex (MHC) class I molecules present peptide ligands on the
cell surface for recognition by appropriate cytotoxic T cells. MHC-bound peptides are critical
for the stability of the MHC complex, and standard strategies for the production of
recombinant MHC complexes are based on in vitro refolding reactions with specific
peptides. This strategy is not amenable to high-throughput production of vast collections of
MHC molecules. We have developed conditional MHC ligands that form stable complexes …
Abstract
Major histocompatibility complex (MHC) class I molecules present peptide ligands on the cell surface for recognition by appropriate cytotoxic T cells. MHC-bound peptides are critical for the stability of the MHC complex, and standard strategies for the production of recombinant MHC complexes are based on in vitro refolding reactions with specific peptides. This strategy is not amenable to high-throughput production of vast collections of MHC molecules. We have developed conditional MHC ligands that form stable complexes with MHC molecules but can be cleaved upon UV irradiation. The resulting empty, peptide-receptive MHC molecules can be charged with epitopes of choice under native conditions. Here we describe in-depth procedures for the high-throughput production of peptide-MHC (pMHC) complexes by MHC exchange, the analysis of peptide exchange efficiency by ELISA and the parallel production of MHC tetramers for T-cell detection. The production of the conditional pMHC complex by an in vitro refolding reaction can be achieved within 2 weeks, and the actual high-throughput MHC peptide exchange and subsequent MHC tetramer formation require less than a day.
*Note: In the version of this article originally published online, the Reagent Setup listing for wash buffer should have read: “20 mM Tris pH 8, 100 mM NaCl.” This error has been corrected in the HTML and PDF versions of the article.
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