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The Immunopeptidome from a Genomic Perspective: Establishing the Noncanonical Landscape of MHC Class I–Associated Peptides

Tumor antigens can emerge through multiple mechanisms, including translation of noncoding genomic regions. This noncanonical category of tumor antigens has recently gained attention; however, our understanding of how they recur within and between cancer types is still in its infancy. Therefore, we d...

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Autores principales: Bedran, Georges, Gasser, Hans-Christof, Weke, Kenneth, Wang, Tongjie, Bedran, Dominika, Laird, Alexander, Battail, Christophe, Zanzotto, Fabio Massimo, Pesquita, Catia, Axelson, Håkan, Rajan, Ajitha, Harrison, David J., Palkowski, Aleksander, Pawlik, Maciej, Parys, Maciej, O'Neill, J. Robert, Brennan, Paul M., Symeonides, Stefan N., Goodlett, David R., Litchfield, Kevin, Fahraeus, Robin, Hupp, Ted R., Kote, Sachin, Alfaro, Javier A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Association for Cancer Research 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10236148/
https://www.ncbi.nlm.nih.gov/pubmed/36961404
http://dx.doi.org/10.1158/2326-6066.CIR-22-0621
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author Bedran, Georges
Gasser, Hans-Christof
Weke, Kenneth
Wang, Tongjie
Bedran, Dominika
Laird, Alexander
Battail, Christophe
Zanzotto, Fabio Massimo
Pesquita, Catia
Axelson, Håkan
Rajan, Ajitha
Harrison, David J.
Palkowski, Aleksander
Pawlik, Maciej
Parys, Maciej
O'Neill, J. Robert
Brennan, Paul M.
Symeonides, Stefan N.
Goodlett, David R.
Litchfield, Kevin
Fahraeus, Robin
Hupp, Ted R.
Kote, Sachin
Alfaro, Javier A.
author_facet Bedran, Georges
Gasser, Hans-Christof
Weke, Kenneth
Wang, Tongjie
Bedran, Dominika
Laird, Alexander
Battail, Christophe
Zanzotto, Fabio Massimo
Pesquita, Catia
Axelson, Håkan
Rajan, Ajitha
Harrison, David J.
Palkowski, Aleksander
Pawlik, Maciej
Parys, Maciej
O'Neill, J. Robert
Brennan, Paul M.
Symeonides, Stefan N.
Goodlett, David R.
Litchfield, Kevin
Fahraeus, Robin
Hupp, Ted R.
Kote, Sachin
Alfaro, Javier A.
author_sort Bedran, Georges
collection PubMed
description Tumor antigens can emerge through multiple mechanisms, including translation of noncoding genomic regions. This noncanonical category of tumor antigens has recently gained attention; however, our understanding of how they recur within and between cancer types is still in its infancy. Therefore, we developed a proteogenomic pipeline based on deep learning de novo mass spectrometry (MS) to enable the discovery of noncanonical MHC class I–associated peptides (ncMAP) from noncoding regions. Considering that the emergence of tumor antigens can also involve posttranslational modifications (PTM), we included an open search component in our pipeline. Leveraging the wealth of MS-based immunopeptidomics, we analyzed data from 26 MHC class I immunopeptidomic studies across 11 different cancer types. We validated the de novo identified ncMAPs, along with the most abundant PTMs, using spectral matching and controlled their FDR to 1%. The noncanonical presentation appeared to be 5 times enriched for the A03 HLA supertype, with a projected population coverage of 55%. The data reveal an atlas of 8,601 ncMAPs with varying levels of cancer selectivity and suggest 17 cancer-selective ncMAPs as attractive therapeutic targets according to a stringent cutoff. In summary, the combination of the open-source pipeline and the atlas of ncMAPs reported herein could facilitate the identification and screening of ncMAPs as targets for T-cell therapies or vaccine development.
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spelling pubmed-102361482023-06-03 The Immunopeptidome from a Genomic Perspective: Establishing the Noncanonical Landscape of MHC Class I–Associated Peptides Bedran, Georges Gasser, Hans-Christof Weke, Kenneth Wang, Tongjie Bedran, Dominika Laird, Alexander Battail, Christophe Zanzotto, Fabio Massimo Pesquita, Catia Axelson, Håkan Rajan, Ajitha Harrison, David J. Palkowski, Aleksander Pawlik, Maciej Parys, Maciej O'Neill, J. Robert Brennan, Paul M. Symeonides, Stefan N. Goodlett, David R. Litchfield, Kevin Fahraeus, Robin Hupp, Ted R. Kote, Sachin Alfaro, Javier A. Cancer Immunol Res Research Articles Tumor antigens can emerge through multiple mechanisms, including translation of noncoding genomic regions. This noncanonical category of tumor antigens has recently gained attention; however, our understanding of how they recur within and between cancer types is still in its infancy. Therefore, we developed a proteogenomic pipeline based on deep learning de novo mass spectrometry (MS) to enable the discovery of noncanonical MHC class I–associated peptides (ncMAP) from noncoding regions. Considering that the emergence of tumor antigens can also involve posttranslational modifications (PTM), we included an open search component in our pipeline. Leveraging the wealth of MS-based immunopeptidomics, we analyzed data from 26 MHC class I immunopeptidomic studies across 11 different cancer types. We validated the de novo identified ncMAPs, along with the most abundant PTMs, using spectral matching and controlled their FDR to 1%. The noncanonical presentation appeared to be 5 times enriched for the A03 HLA supertype, with a projected population coverage of 55%. The data reveal an atlas of 8,601 ncMAPs with varying levels of cancer selectivity and suggest 17 cancer-selective ncMAPs as attractive therapeutic targets according to a stringent cutoff. In summary, the combination of the open-source pipeline and the atlas of ncMAPs reported herein could facilitate the identification and screening of ncMAPs as targets for T-cell therapies or vaccine development. American Association for Cancer Research 2023-06-02 2023-03-24 /pmc/articles/PMC10236148/ /pubmed/36961404 http://dx.doi.org/10.1158/2326-6066.CIR-22-0621 Text en ©2023 The Authors; Published by the American Association for Cancer Research https://creativecommons.org/licenses/by/4.0/This open access article is distributed under the Creative Commons Attribution 4.0 International (CC BY 4.0) license.
spellingShingle Research Articles
Bedran, Georges
Gasser, Hans-Christof
Weke, Kenneth
Wang, Tongjie
Bedran, Dominika
Laird, Alexander
Battail, Christophe
Zanzotto, Fabio Massimo
Pesquita, Catia
Axelson, Håkan
Rajan, Ajitha
Harrison, David J.
Palkowski, Aleksander
Pawlik, Maciej
Parys, Maciej
O'Neill, J. Robert
Brennan, Paul M.
Symeonides, Stefan N.
Goodlett, David R.
Litchfield, Kevin
Fahraeus, Robin
Hupp, Ted R.
Kote, Sachin
Alfaro, Javier A.
The Immunopeptidome from a Genomic Perspective: Establishing the Noncanonical Landscape of MHC Class I–Associated Peptides
title The Immunopeptidome from a Genomic Perspective: Establishing the Noncanonical Landscape of MHC Class I–Associated Peptides
title_full The Immunopeptidome from a Genomic Perspective: Establishing the Noncanonical Landscape of MHC Class I–Associated Peptides
title_fullStr The Immunopeptidome from a Genomic Perspective: Establishing the Noncanonical Landscape of MHC Class I–Associated Peptides
title_full_unstemmed The Immunopeptidome from a Genomic Perspective: Establishing the Noncanonical Landscape of MHC Class I–Associated Peptides
title_short The Immunopeptidome from a Genomic Perspective: Establishing the Noncanonical Landscape of MHC Class I–Associated Peptides
title_sort immunopeptidome from a genomic perspective: establishing the noncanonical landscape of mhc class i–associated peptides
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10236148/
https://www.ncbi.nlm.nih.gov/pubmed/36961404
http://dx.doi.org/10.1158/2326-6066.CIR-22-0621
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