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Degeneracy of Antigen Recognition as the Molecular Basis for the High Frequency of Naive A2/Melan-A Peptide Multimer(+) CD8(+) T Cells in Humans

In contrast with the low frequency of most single epitope reactive T cells in the preimmune repertoire, up to 1 of 1,000 naive CD8(+) T cells from A2(+) individuals specifically bind fluorescent A2/peptide multimers incorporating the A27L analogue of the immunodominant 26–35 peptide from the melanoc...

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Autores principales: Dutoit, Valérie, Rubio-Godoy, Verena, Pittet, Mikäel J., Zippelius, Alfred, Dietrich, Pierre-Yves, Legal, Frédérique Anne, Guillaume, Philippe, Romero, Pedro, Cerottini, Jean-Charles, Houghten, Richard A., Pinilla, Clemencia, Valmori, Danila
Formato: Texto
Lenguaje:English
Publicado: The Rockefeller University Press 2002
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2193921/
https://www.ncbi.nlm.nih.gov/pubmed/12119345
http://dx.doi.org/10.1084/jem.20020242
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author Dutoit, Valérie
Rubio-Godoy, Verena
Pittet, Mikäel J.
Zippelius, Alfred
Dietrich, Pierre-Yves
Legal, Frédérique Anne
Guillaume, Philippe
Romero, Pedro
Cerottini, Jean-Charles
Houghten, Richard A.
Pinilla, Clemencia
Valmori, Danila
author_facet Dutoit, Valérie
Rubio-Godoy, Verena
Pittet, Mikäel J.
Zippelius, Alfred
Dietrich, Pierre-Yves
Legal, Frédérique Anne
Guillaume, Philippe
Romero, Pedro
Cerottini, Jean-Charles
Houghten, Richard A.
Pinilla, Clemencia
Valmori, Danila
author_sort Dutoit, Valérie
collection PubMed
description In contrast with the low frequency of most single epitope reactive T cells in the preimmune repertoire, up to 1 of 1,000 naive CD8(+) T cells from A2(+) individuals specifically bind fluorescent A2/peptide multimers incorporating the A27L analogue of the immunodominant 26–35 peptide from the melanocyte differentiation and melanoma associated antigen Melan-A. This represents the only naive antigen-specific T cell repertoire accessible to direct analysis in humans up to date. To get insight into the molecular basis for the selection and maintenance of such an abundant repertoire, we analyzed the functional diversity of T cells composing this repertoire ex vivo at the clonal level. Surprisingly, we found a significant proportion of multimer(+) clonotypes that failed to recognize both Melan-A analogue and parental peptides in a functional assay but efficiently recognized peptides from proteins of self- or pathogen origin selected for their potential functional cross-reactivity with Melan-A. Consistent with these data, multimers incorporating some of the most frequently recognized peptides specifically stained a proportion of naive CD8(+) T cells similar to that observed with Melan-A multimers. Altogether these results indicate that the high frequency of Melan-A multimer(+) T cells can be explained by the existence of largely cross-reactive subsets of naive CD8(+) T cells displaying multiple specificities.
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spelling pubmed-21939212008-04-11 Degeneracy of Antigen Recognition as the Molecular Basis for the High Frequency of Naive A2/Melan-A Peptide Multimer(+) CD8(+) T Cells in Humans Dutoit, Valérie Rubio-Godoy, Verena Pittet, Mikäel J. Zippelius, Alfred Dietrich, Pierre-Yves Legal, Frédérique Anne Guillaume, Philippe Romero, Pedro Cerottini, Jean-Charles Houghten, Richard A. Pinilla, Clemencia Valmori, Danila J Exp Med Article In contrast with the low frequency of most single epitope reactive T cells in the preimmune repertoire, up to 1 of 1,000 naive CD8(+) T cells from A2(+) individuals specifically bind fluorescent A2/peptide multimers incorporating the A27L analogue of the immunodominant 26–35 peptide from the melanocyte differentiation and melanoma associated antigen Melan-A. This represents the only naive antigen-specific T cell repertoire accessible to direct analysis in humans up to date. To get insight into the molecular basis for the selection and maintenance of such an abundant repertoire, we analyzed the functional diversity of T cells composing this repertoire ex vivo at the clonal level. Surprisingly, we found a significant proportion of multimer(+) clonotypes that failed to recognize both Melan-A analogue and parental peptides in a functional assay but efficiently recognized peptides from proteins of self- or pathogen origin selected for their potential functional cross-reactivity with Melan-A. Consistent with these data, multimers incorporating some of the most frequently recognized peptides specifically stained a proportion of naive CD8(+) T cells similar to that observed with Melan-A multimers. Altogether these results indicate that the high frequency of Melan-A multimer(+) T cells can be explained by the existence of largely cross-reactive subsets of naive CD8(+) T cells displaying multiple specificities. The Rockefeller University Press 2002-07-15 /pmc/articles/PMC2193921/ /pubmed/12119345 http://dx.doi.org/10.1084/jem.20020242 Text en Copyright © 2002, The Rockefeller University Press This article is distributed under the terms of an Attribution–Noncommercial–Share Alike–No Mirror Sites license for the first six months after the publication date (see http://www.rupress.org/terms). After six months it is available under a Creative Commons License (Attribution–Noncommercial–Share Alike 4.0 Unported license, as described at http://creativecommons.org/licenses/by-nc-sa/4.0/).
spellingShingle Article
Dutoit, Valérie
Rubio-Godoy, Verena
Pittet, Mikäel J.
Zippelius, Alfred
Dietrich, Pierre-Yves
Legal, Frédérique Anne
Guillaume, Philippe
Romero, Pedro
Cerottini, Jean-Charles
Houghten, Richard A.
Pinilla, Clemencia
Valmori, Danila
Degeneracy of Antigen Recognition as the Molecular Basis for the High Frequency of Naive A2/Melan-A Peptide Multimer(+) CD8(+) T Cells in Humans
title Degeneracy of Antigen Recognition as the Molecular Basis for the High Frequency of Naive A2/Melan-A Peptide Multimer(+) CD8(+) T Cells in Humans
title_full Degeneracy of Antigen Recognition as the Molecular Basis for the High Frequency of Naive A2/Melan-A Peptide Multimer(+) CD8(+) T Cells in Humans
title_fullStr Degeneracy of Antigen Recognition as the Molecular Basis for the High Frequency of Naive A2/Melan-A Peptide Multimer(+) CD8(+) T Cells in Humans
title_full_unstemmed Degeneracy of Antigen Recognition as the Molecular Basis for the High Frequency of Naive A2/Melan-A Peptide Multimer(+) CD8(+) T Cells in Humans
title_short Degeneracy of Antigen Recognition as the Molecular Basis for the High Frequency of Naive A2/Melan-A Peptide Multimer(+) CD8(+) T Cells in Humans
title_sort degeneracy of antigen recognition as the molecular basis for the high frequency of naive a2/melan-a peptide multimer(+) cd8(+) t cells in humans
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2193921/
https://www.ncbi.nlm.nih.gov/pubmed/12119345
http://dx.doi.org/10.1084/jem.20020242
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