Published online 8 May 2006 doi:10.1084/jem.20060058
Rockefeller University Press, 0022-1007 $8.00
JEM, Volume 203, Number 5, 1319-1328
The impact of DM on MHC class IIrestricted antigen presentation can be altered by manipulation of MHCpeptide kinetic stability
Christopher A. Lazarski1,2,
Francisco A. Chaves1, and
Andrea J. Sant1
1 David H. Smith Center for Vaccine Biology and Immunology, Aab Institute and Department of Microbiology and Immunology, University of Rochester, Rochester, NY 14642
2 Committee on Immunology, Division of Biological Sciences, University of Chicago, Chicago, IL 60637
CORRESPONDENCE Andrea J. Sant: andrea_sant{at}urmc.rochester.edu
DM edits the peptide repertoire presented by major histocompatibility complex class II molecules by professional antigen-presenting cells (APCs), favoring presentation of some peptides over others. Despite considerable research by many laboratories, there is still significant uncertainty regarding the biochemical attributes of class IIpeptide complexes that govern their susceptibility to DM editing. Here, using APCs that either do or do not express DM and a set of unrelated antigens, we found that the intrinsic kinetic stability of class IIpeptide complexes is tightly correlated with the effects of DM editing within APCs. Furthermore, through the use of kinetic stability variants of three independent peptides, we demonstrate that increasing or decreasing the kinetic stability of class IIpeptide complexes causes a corresponding alteration in DM editing. Finally, we show that the spontaneous kinetic stability of class II complexes correlates directly with the efficiency of presentation by DM+ APCs and the immunodominance of that class IIpeptide complex during an immune response. Collectively, these results suggest that the pattern of DM editing in APCs can be intentionally changed by modifying class IIpeptide interactions, leading to the desired hierarchy of presentation on APCs, thereby promoting recruitment of CD4 T cells specific for the preferred peptides during an immune response.
Abbreviations used: HEL, hen egg lysozyme; SWM, sperm whale myoglobin.

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