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Natural Splice Variant of MHC Class I Cytoplasmic Tail Enhances Dendritic Cell-Induced CD8(+) T-Cell Responses and Boosts Anti-Tumor Immunity

Dendritic cell (DC)-mediated presentation of MHC class I (MHC-I)/peptide complexes is a crucial first step in the priming of CTL responses, and the cytoplasmic tail of MHC-I plays an important role in modulating this process. Several species express a splice variant of the MHC-I tail that deletes ex...

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Autores principales: Rodríguez-Cruz, Tania G., Liu, Shujuan, Khalili, Jahan S., Whittington, Mayra, Zhang, Minying, Overwijk, Willem, Lizée, Gregory
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3157908/
https://www.ncbi.nlm.nih.gov/pubmed/21860662
http://dx.doi.org/10.1371/journal.pone.0022939
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author Rodríguez-Cruz, Tania G.
Liu, Shujuan
Khalili, Jahan S.
Whittington, Mayra
Zhang, Minying
Overwijk, Willem
Lizée, Gregory
author_facet Rodríguez-Cruz, Tania G.
Liu, Shujuan
Khalili, Jahan S.
Whittington, Mayra
Zhang, Minying
Overwijk, Willem
Lizée, Gregory
author_sort Rodríguez-Cruz, Tania G.
collection PubMed
description Dendritic cell (DC)-mediated presentation of MHC class I (MHC-I)/peptide complexes is a crucial first step in the priming of CTL responses, and the cytoplasmic tail of MHC-I plays an important role in modulating this process. Several species express a splice variant of the MHC-I tail that deletes exon 7-encoding amino acids (Δ7), including a conserved serine phosphorylation site. Previously, it has been shown that Δ7 MHC-I molecules demonstrate extended DC surface half-lives, and that mice expressing Δ7-K(b) generate significantly augmented CTL responses to viral challenge. Herein, we show that Δ7-D(b)-expressing DCs stimulated significantly more proliferation and much higher cytokine secretion by melanoma antigen-specific (Pmel-1) T cells. Moreover, in combination with adoptive Pmel-1 T-cell transfer, Δ7-D(b) DCs were superior to WT-D(b) DCs at stimulating anti-tumor responses against established B16 melanoma tumors, significantly extending mouse survival. Human DCs engineered to express Δ7-HLA-A*0201 showed similarly enhanced CTL stimulatory capacity. Further studies demonstrated impaired lateral membrane movement and clustering of human Δ7-MHC-I/peptide complexes, resulting in significantly increased bioavailability of MHC-I/peptide complexes for specific CD8(+) T cells. Collectively, these data suggest that targeting exon 7-encoded MHC-I cytoplasmic determinants in DC vaccines has the potential to increase CD8(+) T-cell stimulatory capacity and substantially improve their clinical efficacy.
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spelling pubmed-31579082011-08-22 Natural Splice Variant of MHC Class I Cytoplasmic Tail Enhances Dendritic Cell-Induced CD8(+) T-Cell Responses and Boosts Anti-Tumor Immunity Rodríguez-Cruz, Tania G. Liu, Shujuan Khalili, Jahan S. Whittington, Mayra Zhang, Minying Overwijk, Willem Lizée, Gregory PLoS One Research Article Dendritic cell (DC)-mediated presentation of MHC class I (MHC-I)/peptide complexes is a crucial first step in the priming of CTL responses, and the cytoplasmic tail of MHC-I plays an important role in modulating this process. Several species express a splice variant of the MHC-I tail that deletes exon 7-encoding amino acids (Δ7), including a conserved serine phosphorylation site. Previously, it has been shown that Δ7 MHC-I molecules demonstrate extended DC surface half-lives, and that mice expressing Δ7-K(b) generate significantly augmented CTL responses to viral challenge. Herein, we show that Δ7-D(b)-expressing DCs stimulated significantly more proliferation and much higher cytokine secretion by melanoma antigen-specific (Pmel-1) T cells. Moreover, in combination with adoptive Pmel-1 T-cell transfer, Δ7-D(b) DCs were superior to WT-D(b) DCs at stimulating anti-tumor responses against established B16 melanoma tumors, significantly extending mouse survival. Human DCs engineered to express Δ7-HLA-A*0201 showed similarly enhanced CTL stimulatory capacity. Further studies demonstrated impaired lateral membrane movement and clustering of human Δ7-MHC-I/peptide complexes, resulting in significantly increased bioavailability of MHC-I/peptide complexes for specific CD8(+) T cells. Collectively, these data suggest that targeting exon 7-encoded MHC-I cytoplasmic determinants in DC vaccines has the potential to increase CD8(+) T-cell stimulatory capacity and substantially improve their clinical efficacy. Public Library of Science 2011-08-10 /pmc/articles/PMC3157908/ /pubmed/21860662 http://dx.doi.org/10.1371/journal.pone.0022939 Text en Rodríguez-Cruz et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Rodríguez-Cruz, Tania G.
Liu, Shujuan
Khalili, Jahan S.
Whittington, Mayra
Zhang, Minying
Overwijk, Willem
Lizée, Gregory
Natural Splice Variant of MHC Class I Cytoplasmic Tail Enhances Dendritic Cell-Induced CD8(+) T-Cell Responses and Boosts Anti-Tumor Immunity
title Natural Splice Variant of MHC Class I Cytoplasmic Tail Enhances Dendritic Cell-Induced CD8(+) T-Cell Responses and Boosts Anti-Tumor Immunity
title_full Natural Splice Variant of MHC Class I Cytoplasmic Tail Enhances Dendritic Cell-Induced CD8(+) T-Cell Responses and Boosts Anti-Tumor Immunity
title_fullStr Natural Splice Variant of MHC Class I Cytoplasmic Tail Enhances Dendritic Cell-Induced CD8(+) T-Cell Responses and Boosts Anti-Tumor Immunity
title_full_unstemmed Natural Splice Variant of MHC Class I Cytoplasmic Tail Enhances Dendritic Cell-Induced CD8(+) T-Cell Responses and Boosts Anti-Tumor Immunity
title_short Natural Splice Variant of MHC Class I Cytoplasmic Tail Enhances Dendritic Cell-Induced CD8(+) T-Cell Responses and Boosts Anti-Tumor Immunity
title_sort natural splice variant of mhc class i cytoplasmic tail enhances dendritic cell-induced cd8(+) t-cell responses and boosts anti-tumor immunity
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3157908/
https://www.ncbi.nlm.nih.gov/pubmed/21860662
http://dx.doi.org/10.1371/journal.pone.0022939
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