Isolation of high avidity melanoma-reactive CTL from heterogeneous populations using peptide-MHC tetramers

C Yee, PA Savage, PP Lee, MM Davis… - The Journal of …, 1999 - journals.aai.org
C Yee, PA Savage, PP Lee, MM Davis, PD Greenberg
The Journal of Immunology, 1999journals.aai.org
Immunogenic peptides of human tumor Ag have been used to generate antigen-specific
CTL. However, the vast majority of these peptide-specific CTL clones are of low avidity and
are peptide, but not tumor, reactive. Peptide-MHC tetramers have been shown to bind
specific TCRs with sufficient affinity to be useful reagents for flow cytometry. In this paper we
demonstrate that peptide-MHC tetramers can also be used to selectively identify high avidity
tumor-reactive CTL and enrich, from a heterogeneous population, the subpopulation of …
Abstract
Immunogenic peptides of human tumor Ag have been used to generate antigen-specific CTL. However, the vast majority of these peptide-specific CTL clones are of low avidity and are peptide, but not tumor, reactive. Peptide-MHC tetramers have been shown to bind specific TCRs with sufficient affinity to be useful reagents for flow cytometry. In this paper we demonstrate that peptide-MHC tetramers can also be used to selectively identify high avidity tumor-reactive CTL and enrich, from a heterogeneous population, the subpopulation of peptide-reactive T cells that can lyse tumor targets. The melanoma proteins, MART-1 and gp100, were used to induce potentially tumor-reactive T cells, and the intensity of T cell staining by TCR binding of specific peptide-MHC tetramers was assessed. A range of fluorescence intensity was detected, and the magnitude of tetramer binding was correlated with T cell avidity. The population of peptide-reactive T cells was phenotypically similar with regard to expression of TCR and adhesion molecules, suggesting that this differential avidity for tumor cells reflected differential affinity of the TCR for its peptide-MHC ligand. Sorting, cloning, and expansion of tetramer high CTL from a heterogeneous population of peptide-stimulated PBMCs enabled rapid selection of high avidity tumor-reactive CTL clones, which retained their functional and tetramer high phenotype on re-expansion. These results demonstrate that the avidity of a T cell for its tumor target is due to the specific affinity of the TCR for its peptide-MHC ligand, that this interaction can be described using peptide-MHC tetramers and used to isolate high avidity tumor-reactive CTL.
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