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OpenProt 2021: deeper functional annotation of the coding potential of eukaryotic genomes

OpenProt (www.openprot.org) is the first proteogenomic resource supporting a polycistronic annotation model for eukaryotic genomes. It provides a deeper annotation of open reading frames (ORFs) while mining experimental data for supporting evidence using cutting-edge algorithms. This update presents...

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Autores principales: Brunet, Marie A, Lucier, Jean-François, Levesque, Maxime, Leblanc, Sébastien, Jacques, Jean-Francois, Al-Saedi, Hassan R H, Guilloy, Noé, Grenier, Frederic, Avino, Mariano, Fournier, Isabelle, Salzet, Michel, Ouangraoua, Aïda, Scott, Michelle S, Boisvert, François-Michel, Roucou, Xavier
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7779043/
https://www.ncbi.nlm.nih.gov/pubmed/33179748
http://dx.doi.org/10.1093/nar/gkaa1036
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author Brunet, Marie A
Lucier, Jean-François
Levesque, Maxime
Leblanc, Sébastien
Jacques, Jean-Francois
Al-Saedi, Hassan R H
Guilloy, Noé
Grenier, Frederic
Avino, Mariano
Fournier, Isabelle
Salzet, Michel
Ouangraoua, Aïda
Scott, Michelle S
Boisvert, François-Michel
Roucou, Xavier
author_facet Brunet, Marie A
Lucier, Jean-François
Levesque, Maxime
Leblanc, Sébastien
Jacques, Jean-Francois
Al-Saedi, Hassan R H
Guilloy, Noé
Grenier, Frederic
Avino, Mariano
Fournier, Isabelle
Salzet, Michel
Ouangraoua, Aïda
Scott, Michelle S
Boisvert, François-Michel
Roucou, Xavier
author_sort Brunet, Marie A
collection PubMed
description OpenProt (www.openprot.org) is the first proteogenomic resource supporting a polycistronic annotation model for eukaryotic genomes. It provides a deeper annotation of open reading frames (ORFs) while mining experimental data for supporting evidence using cutting-edge algorithms. This update presents the major improvements since the initial release of OpenProt. All species support recent NCBI RefSeq and Ensembl annotations, with changes in annotations being reported in OpenProt. Using the 131 ribosome profiling datasets re-analysed by OpenProt to date, non-AUG initiation starts are reported alongside a confidence score of the initiating codon. From the 177 mass spectrometry datasets re-analysed by OpenProt to date, the unicity of the detected peptides is controlled at each implementation. Furthermore, to guide the users, detectability statistics and protein relationships (isoforms) are now reported for each protein. Finally, to foster access to deeper ORF annotation independently of one’s bioinformatics skills or computational resources, OpenProt now offers a data analysis platform. Users can submit their dataset for analysis and receive the results from the analysis by OpenProt. All data on OpenProt are freely available and downloadable for each species, the release-based format ensuring a continuous access to the data. Thus, OpenProt enables a more comprehensive annotation of eukaryotic genomes and fosters functional proteomic discoveries.
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spelling pubmed-77790432021-01-07 OpenProt 2021: deeper functional annotation of the coding potential of eukaryotic genomes Brunet, Marie A Lucier, Jean-François Levesque, Maxime Leblanc, Sébastien Jacques, Jean-Francois Al-Saedi, Hassan R H Guilloy, Noé Grenier, Frederic Avino, Mariano Fournier, Isabelle Salzet, Michel Ouangraoua, Aïda Scott, Michelle S Boisvert, François-Michel Roucou, Xavier Nucleic Acids Res Database Issue OpenProt (www.openprot.org) is the first proteogenomic resource supporting a polycistronic annotation model for eukaryotic genomes. It provides a deeper annotation of open reading frames (ORFs) while mining experimental data for supporting evidence using cutting-edge algorithms. This update presents the major improvements since the initial release of OpenProt. All species support recent NCBI RefSeq and Ensembl annotations, with changes in annotations being reported in OpenProt. Using the 131 ribosome profiling datasets re-analysed by OpenProt to date, non-AUG initiation starts are reported alongside a confidence score of the initiating codon. From the 177 mass spectrometry datasets re-analysed by OpenProt to date, the unicity of the detected peptides is controlled at each implementation. Furthermore, to guide the users, detectability statistics and protein relationships (isoforms) are now reported for each protein. Finally, to foster access to deeper ORF annotation independently of one’s bioinformatics skills or computational resources, OpenProt now offers a data analysis platform. Users can submit their dataset for analysis and receive the results from the analysis by OpenProt. All data on OpenProt are freely available and downloadable for each species, the release-based format ensuring a continuous access to the data. Thus, OpenProt enables a more comprehensive annotation of eukaryotic genomes and fosters functional proteomic discoveries. Oxford University Press 2020-11-12 /pmc/articles/PMC7779043/ /pubmed/33179748 http://dx.doi.org/10.1093/nar/gkaa1036 Text en © The Author(s) 2020. Published by Oxford University Press on behalf of Nucleic Acids Research. http://creativecommons.org/licenses/by/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Database Issue
Brunet, Marie A
Lucier, Jean-François
Levesque, Maxime
Leblanc, Sébastien
Jacques, Jean-Francois
Al-Saedi, Hassan R H
Guilloy, Noé
Grenier, Frederic
Avino, Mariano
Fournier, Isabelle
Salzet, Michel
Ouangraoua, Aïda
Scott, Michelle S
Boisvert, François-Michel
Roucou, Xavier
OpenProt 2021: deeper functional annotation of the coding potential of eukaryotic genomes
title OpenProt 2021: deeper functional annotation of the coding potential of eukaryotic genomes
title_full OpenProt 2021: deeper functional annotation of the coding potential of eukaryotic genomes
title_fullStr OpenProt 2021: deeper functional annotation of the coding potential of eukaryotic genomes
title_full_unstemmed OpenProt 2021: deeper functional annotation of the coding potential of eukaryotic genomes
title_short OpenProt 2021: deeper functional annotation of the coding potential of eukaryotic genomes
title_sort openprot 2021: deeper functional annotation of the coding potential of eukaryotic genomes
topic Database Issue
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7779043/
https://www.ncbi.nlm.nih.gov/pubmed/33179748
http://dx.doi.org/10.1093/nar/gkaa1036
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