CD8+ T-cell cross-competition is governed by peptide–MHC class I stability
نویسندگان
چکیده
A major contributing factor to the final magnitude and breadth of CD8(+) T-cell responses to complex antigens is immunodomination, where CD8(+) T cells recognizing their cognate ligand inhibit the proliferation of other CD8(+) T cells engaged with the same APC. In this study, we examined how the half-life of cell surface peptide-MHC class I complexes influences this phenomenon. We found that primary CD8(+) T-cell responses to DNA vaccines in mice are shaped by competition among responding CD8(+) T cells for nonspecific stimuli early after activation and prior to cell division. The susceptibility of CD8(+) T cells to 'domination' was a direct correlate of higher kinetic stability of the competing CD8(+) T-cell cognate ligand. When high affinity competitive CD8(+) T cells were deleted by self-antigen expression, competition was abrogated. These findings show, for the first time to our knowledge, the existence of regulatory mechanisms that direct the responding CD8(+) T-cell repertoire toward epitopes with high-stability interactions with MHC class I molecules. They also provide an insight into factors that facilitate CD8(+) T-cell coexistence, with important implications for vaccine design and delivery.
منابع مشابه
Modification of a tumor antigen determinant to improve peptide/MHC stability is associated with increased immunogenicity and cross-priming a larger fraction of CD8+ T cells.
Altered peptide ligands (APLs) with enhanced binding to MHC class I can increase the CD8(+) T cell response to native Ags, including tumor Ags. In this study, we investigate the influence of peptide-MHC (pMHC) stability on recruitment of tumor Ag-specific CD8(+) T cells through cross-priming. Among the four known H-2(b)-restricted CD8(+) T cell determinants within SV40 large tumor Ag (TAg), the...
متن کاملDendritic cells cross-dressed with peptide MHC class I complexes prime CD8+ T cells.
The activation of naive CD8+ T cells has been attributed to two mechanisms: cross-priming and direct priming. Cross-priming and direct priming differ in the source of Ag and in the cell that presents the Ag to the responding CD8+ T cells. In cross-priming, exogenous Ag is acquired by professional APCs, such as dendritic cells (DC), which process the Ag into peptides that are subsequently presen...
متن کاملIdentification of Mycobacterium tuberculosis CTL Epitopes Restricted by HLA-A*0201 in HHD Mice
CD8+ T cells are thought to play an important role in protective immunity to tuberculosis. The major histocompatibility complex class I subtype HLA-A*0201 is one of the most prevalent class I alleles, with a frequency of over 30% in most populations. HLA-A*0201 transgenic, H-2Db/mouse beta2-microglobulin double-knockout mice (HHD) which express human HLA-A*0201 but no mouse class I, was shown t...
متن کاملRegulation of MHC class I transport in human dendritic cells and the dendritic-like cell line KG-1.
Dendritic cells (DCs) progress through distinct maturational phases; immature DCs capture Ag while mature DCs are optimized for Ag presentation. Proper control of immunity requires regulated compartmentalization of MHC class II molecules. We report that DCs also regulate MHC class I trafficking throughout maturation. Although mature human DCs express high levels of surface MHC class I, immature...
متن کاملPriming of Autoreactive CD8+ T Cells Is Inhibited by Immunogenic Peptides Which Are Competitive for Major Histocompatibility Complex Class I Binding
In the present study, we investigated if priming of autoreactive CD8(+) T cells would be inhibited by competitive peptides for major histocompatibility complex (MHC) class I binding. We used a mouse model of vitiligo which is induced by immunization of K(b)-binding tyrosinase-related protein 2 (TRP2)-180 peptide. Competitive peptides for K(b) binding inhibited IFN-γ production and proliferation...
متن کامل