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Strategy for Identifying Dendritic Cell-Processed CD4(+) T Cell Epitopes from the HIV Gag p24 Protein

Mass Spectrometry (MS) is becoming a preferred method to identify class I and class II peptides presented on major histocompability complexes (MHC) on antigen presenting cells (APC). We describe a combined computational and MS approach to identify exogenous MHC II peptides presented on mouse spleen...

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Autores principales: Bozzacco, Leonia, Yu, Haiqiang, Dengjel, Jörn, Trumpfheller, Christine, Zebroski, Henry A., Zhang, Nawei, Küttner, Victoria, Ueberheide, Beatrix M., Deng, Haiteng, Chait, Brian T., Steinman, Ralph M., Mojsov, Svetlana, Fenyö, David
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3408443/
https://www.ncbi.nlm.nih.gov/pubmed/22860026
http://dx.doi.org/10.1371/journal.pone.0041897
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author Bozzacco, Leonia
Yu, Haiqiang
Dengjel, Jörn
Trumpfheller, Christine
Zebroski, Henry A.
Zhang, Nawei
Küttner, Victoria
Ueberheide, Beatrix M.
Deng, Haiteng
Chait, Brian T.
Steinman, Ralph M.
Mojsov, Svetlana
Fenyö, David
author_facet Bozzacco, Leonia
Yu, Haiqiang
Dengjel, Jörn
Trumpfheller, Christine
Zebroski, Henry A.
Zhang, Nawei
Küttner, Victoria
Ueberheide, Beatrix M.
Deng, Haiteng
Chait, Brian T.
Steinman, Ralph M.
Mojsov, Svetlana
Fenyö, David
author_sort Bozzacco, Leonia
collection PubMed
description Mass Spectrometry (MS) is becoming a preferred method to identify class I and class II peptides presented on major histocompability complexes (MHC) on antigen presenting cells (APC). We describe a combined computational and MS approach to identify exogenous MHC II peptides presented on mouse spleen dendritic cells (DCs). This approach enables rapid, effective screening of a large number of possible peptides by a computer-assisted strategy that utilizes the extraordinary human ability for pattern recognition. To test the efficacy of the approach, a mixture of epitope peptide mimics (mimetopes) from HIV gag p24 sequence were added exogenously to Fms-like tyrosine kinase 3 ligand (Flt3L)-mobilized splenic DCs. We identified the exogenously added peptide, VDRFYKTLRAEQASQ, and a second peptide, DRFYKLTRAEQASQ, derived from the original exogenously added 15-mer peptide. Furthermore, we demonstrated that our strategy works efficiently with HIV gag p24 protein when delivered, as vaccine protein, to Flt3L expanded mouse splenic DCs in vitro through the DEC-205 receptor. We found that the same MHC II-bound HIV gag p24 peptides, VDRFYKTLRAEQASQ and DRFYKLTRAEQASQ, were naturally processed from anti-DEC-205 HIV gag p24 protein and presented on DCs. The two identified VDRFYKTLRAEQASQ and DRFYKLTRAEQASQ MHC II-bound HIV gag p24 peptides elicited CD4(+) T-cell mediated responses in vitro. Their presentation by DCs to antigen-specific T cells was inhibited by chloroquine (CQ), indicating that optimal presentation of these exogenously added peptides required uptake and vesicular trafficking in mature DCs. These results support the application of our strategy to identify and characterize peptide epitopes derived from vaccine proteins processed by DCs and thus has the potential to greatly accelerate DC-based vaccine development.
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spelling pubmed-34084432012-08-02 Strategy for Identifying Dendritic Cell-Processed CD4(+) T Cell Epitopes from the HIV Gag p24 Protein Bozzacco, Leonia Yu, Haiqiang Dengjel, Jörn Trumpfheller, Christine Zebroski, Henry A. Zhang, Nawei Küttner, Victoria Ueberheide, Beatrix M. Deng, Haiteng Chait, Brian T. Steinman, Ralph M. Mojsov, Svetlana Fenyö, David PLoS One Research Article Mass Spectrometry (MS) is becoming a preferred method to identify class I and class II peptides presented on major histocompability complexes (MHC) on antigen presenting cells (APC). We describe a combined computational and MS approach to identify exogenous MHC II peptides presented on mouse spleen dendritic cells (DCs). This approach enables rapid, effective screening of a large number of possible peptides by a computer-assisted strategy that utilizes the extraordinary human ability for pattern recognition. To test the efficacy of the approach, a mixture of epitope peptide mimics (mimetopes) from HIV gag p24 sequence were added exogenously to Fms-like tyrosine kinase 3 ligand (Flt3L)-mobilized splenic DCs. We identified the exogenously added peptide, VDRFYKTLRAEQASQ, and a second peptide, DRFYKLTRAEQASQ, derived from the original exogenously added 15-mer peptide. Furthermore, we demonstrated that our strategy works efficiently with HIV gag p24 protein when delivered, as vaccine protein, to Flt3L expanded mouse splenic DCs in vitro through the DEC-205 receptor. We found that the same MHC II-bound HIV gag p24 peptides, VDRFYKTLRAEQASQ and DRFYKLTRAEQASQ, were naturally processed from anti-DEC-205 HIV gag p24 protein and presented on DCs. The two identified VDRFYKTLRAEQASQ and DRFYKLTRAEQASQ MHC II-bound HIV gag p24 peptides elicited CD4(+) T-cell mediated responses in vitro. Their presentation by DCs to antigen-specific T cells was inhibited by chloroquine (CQ), indicating that optimal presentation of these exogenously added peptides required uptake and vesicular trafficking in mature DCs. These results support the application of our strategy to identify and characterize peptide epitopes derived from vaccine proteins processed by DCs and thus has the potential to greatly accelerate DC-based vaccine development. Public Library of Science 2012-07-30 /pmc/articles/PMC3408443/ /pubmed/22860026 http://dx.doi.org/10.1371/journal.pone.0041897 Text en © 2012 Bozzacco 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
Bozzacco, Leonia
Yu, Haiqiang
Dengjel, Jörn
Trumpfheller, Christine
Zebroski, Henry A.
Zhang, Nawei
Küttner, Victoria
Ueberheide, Beatrix M.
Deng, Haiteng
Chait, Brian T.
Steinman, Ralph M.
Mojsov, Svetlana
Fenyö, David
Strategy for Identifying Dendritic Cell-Processed CD4(+) T Cell Epitopes from the HIV Gag p24 Protein
title Strategy for Identifying Dendritic Cell-Processed CD4(+) T Cell Epitopes from the HIV Gag p24 Protein
title_full Strategy for Identifying Dendritic Cell-Processed CD4(+) T Cell Epitopes from the HIV Gag p24 Protein
title_fullStr Strategy for Identifying Dendritic Cell-Processed CD4(+) T Cell Epitopes from the HIV Gag p24 Protein
title_full_unstemmed Strategy for Identifying Dendritic Cell-Processed CD4(+) T Cell Epitopes from the HIV Gag p24 Protein
title_short Strategy for Identifying Dendritic Cell-Processed CD4(+) T Cell Epitopes from the HIV Gag p24 Protein
title_sort strategy for identifying dendritic cell-processed cd4(+) t cell epitopes from the hiv gag p24 protein
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3408443/
https://www.ncbi.nlm.nih.gov/pubmed/22860026
http://dx.doi.org/10.1371/journal.pone.0041897
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