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New Genome-Wide Algorithm Identifies Novel In-Vivo Expressed Mycobacterium Tuberculosis Antigens Inducing Human T-Cell Responses with Classical and Unconventional Cytokine Profiles

New strategies are needed to develop better tools to control TB, including identification of novel antigens for vaccination. Such Mtb antigens must be expressed during Mtb infection in the major target organ, the lung, and must be capable of eliciting human immune responses. Using genome-wide transc...

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Autores principales: Coppola, Mariateresa, van Meijgaarden, Krista E., Franken, Kees L. M. C., Commandeur, Susanna, Dolganov, Gregory, Kramnik, Igor, Schoolnik, Gary K., Comas, Inaki, Lund, Ole, Prins, Corine, van den Eeden, Susan J. F., Korsvold, Gro E., Oftung, Fredrik, Geluk, Annemieke, Ottenhoff, Tom H. M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5125271/
https://www.ncbi.nlm.nih.gov/pubmed/27892960
http://dx.doi.org/10.1038/srep37793
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author Coppola, Mariateresa
van Meijgaarden, Krista E.
Franken, Kees L. M. C.
Commandeur, Susanna
Dolganov, Gregory
Kramnik, Igor
Schoolnik, Gary K.
Comas, Inaki
Lund, Ole
Prins, Corine
van den Eeden, Susan J. F.
Korsvold, Gro E.
Oftung, Fredrik
Geluk, Annemieke
Ottenhoff, Tom H. M.
author_facet Coppola, Mariateresa
van Meijgaarden, Krista E.
Franken, Kees L. M. C.
Commandeur, Susanna
Dolganov, Gregory
Kramnik, Igor
Schoolnik, Gary K.
Comas, Inaki
Lund, Ole
Prins, Corine
van den Eeden, Susan J. F.
Korsvold, Gro E.
Oftung, Fredrik
Geluk, Annemieke
Ottenhoff, Tom H. M.
author_sort Coppola, Mariateresa
collection PubMed
description New strategies are needed to develop better tools to control TB, including identification of novel antigens for vaccination. Such Mtb antigens must be expressed during Mtb infection in the major target organ, the lung, and must be capable of eliciting human immune responses. Using genome-wide transcriptomics of Mtb infected lungs we developed data sets and methods to identify IVE-TB (in-vivo expressed Mtb) antigens expressed in the lung. Quantitative expression analysis of 2,068 Mtb genes from the predicted first operons identified the most upregulated IVE-TB genes during in-vivo pulmonary infection. By further analysing high-level conservation among whole-genome sequenced Mtb-complex strains (n = 219) and algorithms predicting HLA-class-Ia and II presented epitopes, we selected the most promising IVE-TB candidate antigens. Several of these were recognized by T-cells from in-vitro Mtb-PPD and ESAT6/CFP10-positive donors by proliferation and multi-cytokine production. This was validated in an independent cohort of latently Mtb-infected individuals. Significant T-cell responses were observed in the absence of IFN-γ-production. Collectively, the results underscore the power of our novel antigen discovery approach in identifying Mtb antigens, including those that induce unconventional T-cell responses, which may provide important novel tools for TB vaccination and biomarker profiling. Our generic approach is applicable to other infectious diseases.
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spelling pubmed-51252712016-12-08 New Genome-Wide Algorithm Identifies Novel In-Vivo Expressed Mycobacterium Tuberculosis Antigens Inducing Human T-Cell Responses with Classical and Unconventional Cytokine Profiles Coppola, Mariateresa van Meijgaarden, Krista E. Franken, Kees L. M. C. Commandeur, Susanna Dolganov, Gregory Kramnik, Igor Schoolnik, Gary K. Comas, Inaki Lund, Ole Prins, Corine van den Eeden, Susan J. F. Korsvold, Gro E. Oftung, Fredrik Geluk, Annemieke Ottenhoff, Tom H. M. Sci Rep Article New strategies are needed to develop better tools to control TB, including identification of novel antigens for vaccination. Such Mtb antigens must be expressed during Mtb infection in the major target organ, the lung, and must be capable of eliciting human immune responses. Using genome-wide transcriptomics of Mtb infected lungs we developed data sets and methods to identify IVE-TB (in-vivo expressed Mtb) antigens expressed in the lung. Quantitative expression analysis of 2,068 Mtb genes from the predicted first operons identified the most upregulated IVE-TB genes during in-vivo pulmonary infection. By further analysing high-level conservation among whole-genome sequenced Mtb-complex strains (n = 219) and algorithms predicting HLA-class-Ia and II presented epitopes, we selected the most promising IVE-TB candidate antigens. Several of these were recognized by T-cells from in-vitro Mtb-PPD and ESAT6/CFP10-positive donors by proliferation and multi-cytokine production. This was validated in an independent cohort of latently Mtb-infected individuals. Significant T-cell responses were observed in the absence of IFN-γ-production. Collectively, the results underscore the power of our novel antigen discovery approach in identifying Mtb antigens, including those that induce unconventional T-cell responses, which may provide important novel tools for TB vaccination and biomarker profiling. Our generic approach is applicable to other infectious diseases. Nature Publishing Group 2016-11-28 /pmc/articles/PMC5125271/ /pubmed/27892960 http://dx.doi.org/10.1038/srep37793 Text en Copyright © 2016, The Author(s) http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Coppola, Mariateresa
van Meijgaarden, Krista E.
Franken, Kees L. M. C.
Commandeur, Susanna
Dolganov, Gregory
Kramnik, Igor
Schoolnik, Gary K.
Comas, Inaki
Lund, Ole
Prins, Corine
van den Eeden, Susan J. F.
Korsvold, Gro E.
Oftung, Fredrik
Geluk, Annemieke
Ottenhoff, Tom H. M.
New Genome-Wide Algorithm Identifies Novel In-Vivo Expressed Mycobacterium Tuberculosis Antigens Inducing Human T-Cell Responses with Classical and Unconventional Cytokine Profiles
title New Genome-Wide Algorithm Identifies Novel In-Vivo Expressed Mycobacterium Tuberculosis Antigens Inducing Human T-Cell Responses with Classical and Unconventional Cytokine Profiles
title_full New Genome-Wide Algorithm Identifies Novel In-Vivo Expressed Mycobacterium Tuberculosis Antigens Inducing Human T-Cell Responses with Classical and Unconventional Cytokine Profiles
title_fullStr New Genome-Wide Algorithm Identifies Novel In-Vivo Expressed Mycobacterium Tuberculosis Antigens Inducing Human T-Cell Responses with Classical and Unconventional Cytokine Profiles
title_full_unstemmed New Genome-Wide Algorithm Identifies Novel In-Vivo Expressed Mycobacterium Tuberculosis Antigens Inducing Human T-Cell Responses with Classical and Unconventional Cytokine Profiles
title_short New Genome-Wide Algorithm Identifies Novel In-Vivo Expressed Mycobacterium Tuberculosis Antigens Inducing Human T-Cell Responses with Classical and Unconventional Cytokine Profiles
title_sort new genome-wide algorithm identifies novel in-vivo expressed mycobacterium tuberculosis antigens inducing human t-cell responses with classical and unconventional cytokine profiles
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5125271/
https://www.ncbi.nlm.nih.gov/pubmed/27892960
http://dx.doi.org/10.1038/srep37793
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