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The first step of peptide selection in antigen presentation by MHC class I molecules.

Malgorzata A Garstka ,
Alexander Fish ,
Patrick H N Celie ,
Robbie P Joosten ,
George M C Janssen ,
Ilana Berlin ,
Rieuwert Hoppes ,
Magda Stadnik ,
Lennert Janssen ,
Huib Ovaa ,
Peter A van Veelen ,
Anastassis Perrakis ,
Jacques Neefjes

Abstract

MHC class I molecules present a variable but limited repertoire of antigenic peptides for T-cell recognition. Understanding how peptide selection is achieved requires mechanistic insights into the interactions between the MHC I and candidate peptides. We find that, at first encounter, MHC I H-2K(b) considers a wide range of peptides, including those with expanded N termini and unfitting anchor residues. Discrimination occurs in the second step, when noncanonical peptides dissociate with faster exchange rates. This second step exhibits remarkable temperature sensitivity, as illustrated by numerous noncanonical peptides presented by H-2K(b) in cells cultured at 26 °C relative to 37 °C. Crystallographic analyses of H-2K(b)-peptide complexes suggest that a conformational adaptation of H-2K(b) drives the decisive step in peptide selection. We propose that MHC class I molecules consider initially a large peptide pool, subsequently refined by a temperature-sensitive induced-fit mechanism to retain the canonical peptide repertoire.

More about this publication

Proceedings of the National Academy of Sciences of the United States of America

Volume 112
Issue nr. 5
Pages 1505-10
Publication date 03-02-2015

Full text links

Publisher website (DOI) 10.1073/pnas.1416543112
Europe PubMed Central 25605945
Pubmed 25605945

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