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A large-scale evaluation of computational protein function prediction
Automated annotation of protein function is challenging. As the number of sequenced genomes rapidly grows, the overwhelming majority of protein products can only be annotated computationally. If computational predictions are to be relied upon, it is crucial that the accuracy of these methods be high...
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Nature Publishing Group US
2013
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3584181/ https://www.ncbi.nlm.nih.gov/pubmed/23353650 http://dx.doi.org/10.1038/nmeth.2340 |
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author | Radivojac, Predrag Clark, Wyatt T Oron, Tal Ronnen Schnoes, Alexandra M Wittkop, Tobias Sokolov, Artem Graim, Kiley Funk, Christopher Verspoor, Karin Ben-Hur, Asa Pandey, Gaurav Yunes, Jeffrey M Talwalkar, Ameet S Repo, Susanna Souza, Michael L Piovesan, Damiano Casadio, Rita Wang, Zheng Cheng, Jianlin Fang, Hai Gough, Julian Koskinen, Patrik Törönen, Petri Nokso-Koivisto, Jussi Holm, Liisa Cozzetto, Domenico Buchan, Daniel W A Bryson, Kevin Jones, David T Limaye, Bhakti Inamdar, Harshal Datta, Avik Manjari, Sunitha K Joshi, Rajendra Chitale, Meghana Kihara, Daisuke Lisewski, Andreas M Erdin, Serkan Venner, Eric Lichtarge, Olivier Rentzsch, Robert Yang, Haixuan Romero, Alfonso E Bhat, Prajwal Paccanaro, Alberto Hamp, Tobias Kaßner, Rebecca Seemayer, Stefan Vicedo, Esmeralda Schaefer, Christian Achten, Dominik Auer, Florian Boehm, Ariane Braun, Tatjana Hecht, Maximilian Heron, Mark Hönigschmid, Peter Hopf, Thomas A Kaufmann, Stefanie Kiening, Michael Krompass, Denis Landerer, Cedric Mahlich, Yannick Roos, Manfred Björne, Jari Salakoski, Tapio Wong, Andrew Shatkay, Hagit Gatzmann, Fanny Sommer, Ingolf Wass, Mark N Sternberg, Michael J E Škunca, Nives Supek, Fran Bošnjak, Matko Panov, Panče Džeroski, Sašo Šmuc, Tomislav Kourmpetis, Yiannis A I van Dijk, Aalt D J Braak, Cajo J F ter Zhou, Yuanpeng Gong, Qingtian Dong, Xinran Tian, Weidong Falda, Marco Fontana, Paolo Lavezzo, Enrico Di Camillo, Barbara Toppo, Stefano Lan, Liang Djuric, Nemanja Guo, Yuhong Vucetic, Slobodan Bairoch, Amos Linial, Michal Babbitt, Patricia C Brenner, Steven E Orengo, Christine Rost, Burkhard Mooney, Sean D Friedberg, Iddo |
author_facet | Radivojac, Predrag Clark, Wyatt T Oron, Tal Ronnen Schnoes, Alexandra M Wittkop, Tobias Sokolov, Artem Graim, Kiley Funk, Christopher Verspoor, Karin Ben-Hur, Asa Pandey, Gaurav Yunes, Jeffrey M Talwalkar, Ameet S Repo, Susanna Souza, Michael L Piovesan, Damiano Casadio, Rita Wang, Zheng Cheng, Jianlin Fang, Hai Gough, Julian Koskinen, Patrik Törönen, Petri Nokso-Koivisto, Jussi Holm, Liisa Cozzetto, Domenico Buchan, Daniel W A Bryson, Kevin Jones, David T Limaye, Bhakti Inamdar, Harshal Datta, Avik Manjari, Sunitha K Joshi, Rajendra Chitale, Meghana Kihara, Daisuke Lisewski, Andreas M Erdin, Serkan Venner, Eric Lichtarge, Olivier Rentzsch, Robert Yang, Haixuan Romero, Alfonso E Bhat, Prajwal Paccanaro, Alberto Hamp, Tobias Kaßner, Rebecca Seemayer, Stefan Vicedo, Esmeralda Schaefer, Christian Achten, Dominik Auer, Florian Boehm, Ariane Braun, Tatjana Hecht, Maximilian Heron, Mark Hönigschmid, Peter Hopf, Thomas A Kaufmann, Stefanie Kiening, Michael Krompass, Denis Landerer, Cedric Mahlich, Yannick Roos, Manfred Björne, Jari Salakoski, Tapio Wong, Andrew Shatkay, Hagit Gatzmann, Fanny Sommer, Ingolf Wass, Mark N Sternberg, Michael J E Škunca, Nives Supek, Fran Bošnjak, Matko Panov, Panče Džeroski, Sašo Šmuc, Tomislav Kourmpetis, Yiannis A I van Dijk, Aalt D J Braak, Cajo J F ter Zhou, Yuanpeng Gong, Qingtian Dong, Xinran Tian, Weidong Falda, Marco Fontana, Paolo Lavezzo, Enrico Di Camillo, Barbara Toppo, Stefano Lan, Liang Djuric, Nemanja Guo, Yuhong Vucetic, Slobodan Bairoch, Amos Linial, Michal Babbitt, Patricia C Brenner, Steven E Orengo, Christine Rost, Burkhard Mooney, Sean D Friedberg, Iddo |
author_sort | Radivojac, Predrag |
collection | PubMed |
description | Automated annotation of protein function is challenging. As the number of sequenced genomes rapidly grows, the overwhelming majority of protein products can only be annotated computationally. If computational predictions are to be relied upon, it is crucial that the accuracy of these methods be high. Here we report the results from the first large-scale community-based critical assessment of protein function annotation (CAFA) experiment. Fifty-four methods representing the state of the art for protein function prediction were evaluated on a target set of 866 proteins from 11 organisms. Two findings stand out: (i) today's best protein function prediction algorithms substantially outperform widely used first-generation methods, with large gains on all types of targets; and (ii) although the top methods perform well enough to guide experiments, there is considerable need for improvement of currently available tools. SUPPLEMENTARY INFORMATION: The online version of this article (doi:10.1038/nmeth.2340) contains supplementary material, which is available to authorized users. |
format | Online Article Text |
id | pubmed-3584181 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2013 |
publisher | Nature Publishing Group US |
record_format | MEDLINE/PubMed |
spelling | pubmed-35841812013-09-01 A large-scale evaluation of computational protein function prediction Radivojac, Predrag Clark, Wyatt T Oron, Tal Ronnen Schnoes, Alexandra M Wittkop, Tobias Sokolov, Artem Graim, Kiley Funk, Christopher Verspoor, Karin Ben-Hur, Asa Pandey, Gaurav Yunes, Jeffrey M Talwalkar, Ameet S Repo, Susanna Souza, Michael L Piovesan, Damiano Casadio, Rita Wang, Zheng Cheng, Jianlin Fang, Hai Gough, Julian Koskinen, Patrik Törönen, Petri Nokso-Koivisto, Jussi Holm, Liisa Cozzetto, Domenico Buchan, Daniel W A Bryson, Kevin Jones, David T Limaye, Bhakti Inamdar, Harshal Datta, Avik Manjari, Sunitha K Joshi, Rajendra Chitale, Meghana Kihara, Daisuke Lisewski, Andreas M Erdin, Serkan Venner, Eric Lichtarge, Olivier Rentzsch, Robert Yang, Haixuan Romero, Alfonso E Bhat, Prajwal Paccanaro, Alberto Hamp, Tobias Kaßner, Rebecca Seemayer, Stefan Vicedo, Esmeralda Schaefer, Christian Achten, Dominik Auer, Florian Boehm, Ariane Braun, Tatjana Hecht, Maximilian Heron, Mark Hönigschmid, Peter Hopf, Thomas A Kaufmann, Stefanie Kiening, Michael Krompass, Denis Landerer, Cedric Mahlich, Yannick Roos, Manfred Björne, Jari Salakoski, Tapio Wong, Andrew Shatkay, Hagit Gatzmann, Fanny Sommer, Ingolf Wass, Mark N Sternberg, Michael J E Škunca, Nives Supek, Fran Bošnjak, Matko Panov, Panče Džeroski, Sašo Šmuc, Tomislav Kourmpetis, Yiannis A I van Dijk, Aalt D J Braak, Cajo J F ter Zhou, Yuanpeng Gong, Qingtian Dong, Xinran Tian, Weidong Falda, Marco Fontana, Paolo Lavezzo, Enrico Di Camillo, Barbara Toppo, Stefano Lan, Liang Djuric, Nemanja Guo, Yuhong Vucetic, Slobodan Bairoch, Amos Linial, Michal Babbitt, Patricia C Brenner, Steven E Orengo, Christine Rost, Burkhard Mooney, Sean D Friedberg, Iddo Nat Methods Article Automated annotation of protein function is challenging. As the number of sequenced genomes rapidly grows, the overwhelming majority of protein products can only be annotated computationally. If computational predictions are to be relied upon, it is crucial that the accuracy of these methods be high. Here we report the results from the first large-scale community-based critical assessment of protein function annotation (CAFA) experiment. Fifty-four methods representing the state of the art for protein function prediction were evaluated on a target set of 866 proteins from 11 organisms. Two findings stand out: (i) today's best protein function prediction algorithms substantially outperform widely used first-generation methods, with large gains on all types of targets; and (ii) although the top methods perform well enough to guide experiments, there is considerable need for improvement of currently available tools. SUPPLEMENTARY INFORMATION: The online version of this article (doi:10.1038/nmeth.2340) contains supplementary material, which is available to authorized users. Nature Publishing Group US 2013-01-27 2013 /pmc/articles/PMC3584181/ /pubmed/23353650 http://dx.doi.org/10.1038/nmeth.2340 Text en © The Author(s) 2013 This work is licensed under a Creative Commons Attribution-NonCommercial-Share Alike 3.0 Unported License. To view a copy of this license, visit http://creativecommons.org/licenses/by-nc-sa/3.0/ |
spellingShingle | Article Radivojac, Predrag Clark, Wyatt T Oron, Tal Ronnen Schnoes, Alexandra M Wittkop, Tobias Sokolov, Artem Graim, Kiley Funk, Christopher Verspoor, Karin Ben-Hur, Asa Pandey, Gaurav Yunes, Jeffrey M Talwalkar, Ameet S Repo, Susanna Souza, Michael L Piovesan, Damiano Casadio, Rita Wang, Zheng Cheng, Jianlin Fang, Hai Gough, Julian Koskinen, Patrik Törönen, Petri Nokso-Koivisto, Jussi Holm, Liisa Cozzetto, Domenico Buchan, Daniel W A Bryson, Kevin Jones, David T Limaye, Bhakti Inamdar, Harshal Datta, Avik Manjari, Sunitha K Joshi, Rajendra Chitale, Meghana Kihara, Daisuke Lisewski, Andreas M Erdin, Serkan Venner, Eric Lichtarge, Olivier Rentzsch, Robert Yang, Haixuan Romero, Alfonso E Bhat, Prajwal Paccanaro, Alberto Hamp, Tobias Kaßner, Rebecca Seemayer, Stefan Vicedo, Esmeralda Schaefer, Christian Achten, Dominik Auer, Florian Boehm, Ariane Braun, Tatjana Hecht, Maximilian Heron, Mark Hönigschmid, Peter Hopf, Thomas A Kaufmann, Stefanie Kiening, Michael Krompass, Denis Landerer, Cedric Mahlich, Yannick Roos, Manfred Björne, Jari Salakoski, Tapio Wong, Andrew Shatkay, Hagit Gatzmann, Fanny Sommer, Ingolf Wass, Mark N Sternberg, Michael J E Škunca, Nives Supek, Fran Bošnjak, Matko Panov, Panče Džeroski, Sašo Šmuc, Tomislav Kourmpetis, Yiannis A I van Dijk, Aalt D J Braak, Cajo J F ter Zhou, Yuanpeng Gong, Qingtian Dong, Xinran Tian, Weidong Falda, Marco Fontana, Paolo Lavezzo, Enrico Di Camillo, Barbara Toppo, Stefano Lan, Liang Djuric, Nemanja Guo, Yuhong Vucetic, Slobodan Bairoch, Amos Linial, Michal Babbitt, Patricia C Brenner, Steven E Orengo, Christine Rost, Burkhard Mooney, Sean D Friedberg, Iddo A large-scale evaluation of computational protein function prediction |
title | A large-scale evaluation of computational protein function prediction |
title_full | A large-scale evaluation of computational protein function prediction |
title_fullStr | A large-scale evaluation of computational protein function prediction |
title_full_unstemmed | A large-scale evaluation of computational protein function prediction |
title_short | A large-scale evaluation of computational protein function prediction |
title_sort | large-scale evaluation of computational protein function prediction |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3584181/ https://www.ncbi.nlm.nih.gov/pubmed/23353650 http://dx.doi.org/10.1038/nmeth.2340 |
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