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An expanded evaluation of protein function prediction methods shows an improvement in accuracy
BACKGROUND: A major bottleneck in our understanding of the molecular underpinnings of life is the assignment of function to proteins. While molecular experiments provide the most reliable annotation of proteins, their relatively low throughput and restricted purview have led to an increasing role fo...
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
BioMed Central
2016
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5015320/ https://www.ncbi.nlm.nih.gov/pubmed/27604469 http://dx.doi.org/10.1186/s13059-016-1037-6 |
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author | Jiang, Yuxiang Oron, Tal Ronnen Clark, Wyatt T. Bankapur, Asma R. D’Andrea, Daniel Lepore, Rosalba Funk, Christopher S. Kahanda, Indika Verspoor, Karin M. Ben-Hur, Asa Koo, Da Chen Emily Penfold-Brown, Duncan Shasha, Dennis Youngs, Noah Bonneau, Richard Lin, Alexandra Sahraeian, Sayed M. E. Martelli, Pier Luigi Profiti, Giuseppe Casadio, Rita Cao, Renzhi Zhong, Zhaolong Cheng, Jianlin Altenhoff, Adrian Skunca, Nives Dessimoz, Christophe Dogan, Tunca Hakala, Kai Kaewphan, Suwisa Mehryary, Farrokh Salakoski, Tapio Ginter, Filip Fang, Hai Smithers, Ben Oates, Matt Gough, Julian Törönen, Petri Koskinen, Patrik Holm, Liisa Chen, Ching-Tai Hsu, Wen-Lian Bryson, Kevin Cozzetto, Domenico Minneci, Federico Jones, David T. Chapman, Samuel BKC, Dukka Khan, Ishita K. Kihara, Daisuke Ofer, Dan Rappoport, Nadav Stern, Amos Cibrian-Uhalte, Elena Denny, Paul Foulger, Rebecca E. Hieta, Reija Legge, Duncan Lovering, Ruth C. Magrane, Michele Melidoni, Anna N. Mutowo-Meullenet, Prudence Pichler, Klemens Shypitsyna, Aleksandra Li, Biao Zakeri, Pooya ElShal, Sarah Tranchevent, Léon-Charles Das, Sayoni Dawson, Natalie L. Lee, David Lees, Jonathan G. Sillitoe, Ian Bhat, Prajwal Nepusz, Tamás Romero, Alfonso E. Sasidharan, Rajkumar Yang, Haixuan Paccanaro, Alberto Gillis, Jesse Sedeño-Cortés, Adriana E. Pavlidis, Paul Feng, Shou Cejuela, Juan M. Goldberg, Tatyana Hamp, Tobias Richter, Lothar Salamov, Asaf Gabaldon, Toni Marcet-Houben, Marina Supek, Fran Gong, Qingtian Ning, Wei Zhou, Yuanpeng Tian, Weidong Falda, Marco Fontana, Paolo Lavezzo, Enrico Toppo, Stefano Ferrari, Carlo Giollo, Manuel Piovesan, Damiano Tosatto, Silvio C.E. del Pozo, Angela Fernández, José M. Maietta, Paolo Valencia, Alfonso Tress, Michael L. Benso, Alfredo Di Carlo, Stefano Politano, Gianfranco Savino, Alessandro Rehman, Hafeez Ur Re, Matteo Mesiti, Marco Valentini, Giorgio Bargsten, Joachim W. van Dijk, Aalt D. J. Gemovic, Branislava Glisic, Sanja Perovic, Vladmir Veljkovic, Veljko Veljkovic, Nevena Almeida-e-Silva, Danillo C. Vencio, Ricardo Z. N. Sharan, Malvika Vogel, Jörg Kansakar, Lakesh Zhang, Shanshan Vucetic, Slobodan Wang, Zheng Sternberg, Michael J. E. Wass, Mark N. Huntley, Rachael P. Martin, Maria J. O’Donovan, Claire Robinson, Peter N. Moreau, Yves Tramontano, Anna Babbitt, Patricia C. Brenner, Steven E. Linial, Michal Orengo, Christine A. Rost, Burkhard Greene, Casey S. Mooney, Sean D. Friedberg, Iddo Radivojac, Predrag |
author_facet | Jiang, Yuxiang Oron, Tal Ronnen Clark, Wyatt T. Bankapur, Asma R. D’Andrea, Daniel Lepore, Rosalba Funk, Christopher S. Kahanda, Indika Verspoor, Karin M. Ben-Hur, Asa Koo, Da Chen Emily Penfold-Brown, Duncan Shasha, Dennis Youngs, Noah Bonneau, Richard Lin, Alexandra Sahraeian, Sayed M. E. Martelli, Pier Luigi Profiti, Giuseppe Casadio, Rita Cao, Renzhi Zhong, Zhaolong Cheng, Jianlin Altenhoff, Adrian Skunca, Nives Dessimoz, Christophe Dogan, Tunca Hakala, Kai Kaewphan, Suwisa Mehryary, Farrokh Salakoski, Tapio Ginter, Filip Fang, Hai Smithers, Ben Oates, Matt Gough, Julian Törönen, Petri Koskinen, Patrik Holm, Liisa Chen, Ching-Tai Hsu, Wen-Lian Bryson, Kevin Cozzetto, Domenico Minneci, Federico Jones, David T. Chapman, Samuel BKC, Dukka Khan, Ishita K. Kihara, Daisuke Ofer, Dan Rappoport, Nadav Stern, Amos Cibrian-Uhalte, Elena Denny, Paul Foulger, Rebecca E. Hieta, Reija Legge, Duncan Lovering, Ruth C. Magrane, Michele Melidoni, Anna N. Mutowo-Meullenet, Prudence Pichler, Klemens Shypitsyna, Aleksandra Li, Biao Zakeri, Pooya ElShal, Sarah Tranchevent, Léon-Charles Das, Sayoni Dawson, Natalie L. Lee, David Lees, Jonathan G. Sillitoe, Ian Bhat, Prajwal Nepusz, Tamás Romero, Alfonso E. Sasidharan, Rajkumar Yang, Haixuan Paccanaro, Alberto Gillis, Jesse Sedeño-Cortés, Adriana E. Pavlidis, Paul Feng, Shou Cejuela, Juan M. Goldberg, Tatyana Hamp, Tobias Richter, Lothar Salamov, Asaf Gabaldon, Toni Marcet-Houben, Marina Supek, Fran Gong, Qingtian Ning, Wei Zhou, Yuanpeng Tian, Weidong Falda, Marco Fontana, Paolo Lavezzo, Enrico Toppo, Stefano Ferrari, Carlo Giollo, Manuel Piovesan, Damiano Tosatto, Silvio C.E. del Pozo, Angela Fernández, José M. Maietta, Paolo Valencia, Alfonso Tress, Michael L. Benso, Alfredo Di Carlo, Stefano Politano, Gianfranco Savino, Alessandro Rehman, Hafeez Ur Re, Matteo Mesiti, Marco Valentini, Giorgio Bargsten, Joachim W. van Dijk, Aalt D. J. Gemovic, Branislava Glisic, Sanja Perovic, Vladmir Veljkovic, Veljko Veljkovic, Nevena Almeida-e-Silva, Danillo C. Vencio, Ricardo Z. N. Sharan, Malvika Vogel, Jörg Kansakar, Lakesh Zhang, Shanshan Vucetic, Slobodan Wang, Zheng Sternberg, Michael J. E. Wass, Mark N. Huntley, Rachael P. Martin, Maria J. O’Donovan, Claire Robinson, Peter N. Moreau, Yves Tramontano, Anna Babbitt, Patricia C. Brenner, Steven E. Linial, Michal Orengo, Christine A. Rost, Burkhard Greene, Casey S. Mooney, Sean D. Friedberg, Iddo Radivojac, Predrag |
author_sort | Jiang, Yuxiang |
collection | PubMed |
description | BACKGROUND: A major bottleneck in our understanding of the molecular underpinnings of life is the assignment of function to proteins. While molecular experiments provide the most reliable annotation of proteins, their relatively low throughput and restricted purview have led to an increasing role for computational function prediction. However, assessing methods for protein function prediction and tracking progress in the field remain challenging. RESULTS: We conducted the second critical assessment of functional annotation (CAFA), a timed challenge to assess computational methods that automatically assign protein function. We evaluated 126 methods from 56 research groups for their ability to predict biological functions using Gene Ontology and gene-disease associations using Human Phenotype Ontology on a set of 3681 proteins from 18 species. CAFA2 featured expanded analysis compared with CAFA1, with regards to data set size, variety, and assessment metrics. To review progress in the field, the analysis compared the best methods from CAFA1 to those of CAFA2. CONCLUSIONS: The top-performing methods in CAFA2 outperformed those from CAFA1. This increased accuracy can be attributed to a combination of the growing number of experimental annotations and improved methods for function prediction. The assessment also revealed that the definition of top-performing algorithms is ontology specific, that different performance metrics can be used to probe the nature of accurate predictions, and the relative diversity of predictions in the biological process and human phenotype ontologies. While there was methodological improvement between CAFA1 and CAFA2, the interpretation of results and usefulness of individual methods remain context-dependent. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (doi:10.1186/s13059-016-1037-6) contains supplementary material, which is available to authorized users. |
format | Online Article Text |
id | pubmed-5015320 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2016 |
publisher | BioMed Central |
record_format | MEDLINE/PubMed |
spelling | pubmed-50153202016-09-09 An expanded evaluation of protein function prediction methods shows an improvement in accuracy Jiang, Yuxiang Oron, Tal Ronnen Clark, Wyatt T. Bankapur, Asma R. D’Andrea, Daniel Lepore, Rosalba Funk, Christopher S. Kahanda, Indika Verspoor, Karin M. Ben-Hur, Asa Koo, Da Chen Emily Penfold-Brown, Duncan Shasha, Dennis Youngs, Noah Bonneau, Richard Lin, Alexandra Sahraeian, Sayed M. E. Martelli, Pier Luigi Profiti, Giuseppe Casadio, Rita Cao, Renzhi Zhong, Zhaolong Cheng, Jianlin Altenhoff, Adrian Skunca, Nives Dessimoz, Christophe Dogan, Tunca Hakala, Kai Kaewphan, Suwisa Mehryary, Farrokh Salakoski, Tapio Ginter, Filip Fang, Hai Smithers, Ben Oates, Matt Gough, Julian Törönen, Petri Koskinen, Patrik Holm, Liisa Chen, Ching-Tai Hsu, Wen-Lian Bryson, Kevin Cozzetto, Domenico Minneci, Federico Jones, David T. Chapman, Samuel BKC, Dukka Khan, Ishita K. Kihara, Daisuke Ofer, Dan Rappoport, Nadav Stern, Amos Cibrian-Uhalte, Elena Denny, Paul Foulger, Rebecca E. Hieta, Reija Legge, Duncan Lovering, Ruth C. Magrane, Michele Melidoni, Anna N. Mutowo-Meullenet, Prudence Pichler, Klemens Shypitsyna, Aleksandra Li, Biao Zakeri, Pooya ElShal, Sarah Tranchevent, Léon-Charles Das, Sayoni Dawson, Natalie L. Lee, David Lees, Jonathan G. Sillitoe, Ian Bhat, Prajwal Nepusz, Tamás Romero, Alfonso E. Sasidharan, Rajkumar Yang, Haixuan Paccanaro, Alberto Gillis, Jesse Sedeño-Cortés, Adriana E. Pavlidis, Paul Feng, Shou Cejuela, Juan M. Goldberg, Tatyana Hamp, Tobias Richter, Lothar Salamov, Asaf Gabaldon, Toni Marcet-Houben, Marina Supek, Fran Gong, Qingtian Ning, Wei Zhou, Yuanpeng Tian, Weidong Falda, Marco Fontana, Paolo Lavezzo, Enrico Toppo, Stefano Ferrari, Carlo Giollo, Manuel Piovesan, Damiano Tosatto, Silvio C.E. del Pozo, Angela Fernández, José M. Maietta, Paolo Valencia, Alfonso Tress, Michael L. Benso, Alfredo Di Carlo, Stefano Politano, Gianfranco Savino, Alessandro Rehman, Hafeez Ur Re, Matteo Mesiti, Marco Valentini, Giorgio Bargsten, Joachim W. van Dijk, Aalt D. J. Gemovic, Branislava Glisic, Sanja Perovic, Vladmir Veljkovic, Veljko Veljkovic, Nevena Almeida-e-Silva, Danillo C. Vencio, Ricardo Z. N. Sharan, Malvika Vogel, Jörg Kansakar, Lakesh Zhang, Shanshan Vucetic, Slobodan Wang, Zheng Sternberg, Michael J. E. Wass, Mark N. Huntley, Rachael P. Martin, Maria J. O’Donovan, Claire Robinson, Peter N. Moreau, Yves Tramontano, Anna Babbitt, Patricia C. Brenner, Steven E. Linial, Michal Orengo, Christine A. Rost, Burkhard Greene, Casey S. Mooney, Sean D. Friedberg, Iddo Radivojac, Predrag Genome Biol Research BACKGROUND: A major bottleneck in our understanding of the molecular underpinnings of life is the assignment of function to proteins. While molecular experiments provide the most reliable annotation of proteins, their relatively low throughput and restricted purview have led to an increasing role for computational function prediction. However, assessing methods for protein function prediction and tracking progress in the field remain challenging. RESULTS: We conducted the second critical assessment of functional annotation (CAFA), a timed challenge to assess computational methods that automatically assign protein function. We evaluated 126 methods from 56 research groups for their ability to predict biological functions using Gene Ontology and gene-disease associations using Human Phenotype Ontology on a set of 3681 proteins from 18 species. CAFA2 featured expanded analysis compared with CAFA1, with regards to data set size, variety, and assessment metrics. To review progress in the field, the analysis compared the best methods from CAFA1 to those of CAFA2. CONCLUSIONS: The top-performing methods in CAFA2 outperformed those from CAFA1. This increased accuracy can be attributed to a combination of the growing number of experimental annotations and improved methods for function prediction. The assessment also revealed that the definition of top-performing algorithms is ontology specific, that different performance metrics can be used to probe the nature of accurate predictions, and the relative diversity of predictions in the biological process and human phenotype ontologies. While there was methodological improvement between CAFA1 and CAFA2, the interpretation of results and usefulness of individual methods remain context-dependent. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (doi:10.1186/s13059-016-1037-6) contains supplementary material, which is available to authorized users. BioMed Central 2016-09-07 /pmc/articles/PMC5015320/ /pubmed/27604469 http://dx.doi.org/10.1186/s13059-016-1037-6 Text en © The Author(s) 2016 Open Access This article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated. |
spellingShingle | Research Jiang, Yuxiang Oron, Tal Ronnen Clark, Wyatt T. Bankapur, Asma R. D’Andrea, Daniel Lepore, Rosalba Funk, Christopher S. Kahanda, Indika Verspoor, Karin M. Ben-Hur, Asa Koo, Da Chen Emily Penfold-Brown, Duncan Shasha, Dennis Youngs, Noah Bonneau, Richard Lin, Alexandra Sahraeian, Sayed M. E. Martelli, Pier Luigi Profiti, Giuseppe Casadio, Rita Cao, Renzhi Zhong, Zhaolong Cheng, Jianlin Altenhoff, Adrian Skunca, Nives Dessimoz, Christophe Dogan, Tunca Hakala, Kai Kaewphan, Suwisa Mehryary, Farrokh Salakoski, Tapio Ginter, Filip Fang, Hai Smithers, Ben Oates, Matt Gough, Julian Törönen, Petri Koskinen, Patrik Holm, Liisa Chen, Ching-Tai Hsu, Wen-Lian Bryson, Kevin Cozzetto, Domenico Minneci, Federico Jones, David T. Chapman, Samuel BKC, Dukka Khan, Ishita K. Kihara, Daisuke Ofer, Dan Rappoport, Nadav Stern, Amos Cibrian-Uhalte, Elena Denny, Paul Foulger, Rebecca E. Hieta, Reija Legge, Duncan Lovering, Ruth C. Magrane, Michele Melidoni, Anna N. Mutowo-Meullenet, Prudence Pichler, Klemens Shypitsyna, Aleksandra Li, Biao Zakeri, Pooya ElShal, Sarah Tranchevent, Léon-Charles Das, Sayoni Dawson, Natalie L. Lee, David Lees, Jonathan G. Sillitoe, Ian Bhat, Prajwal Nepusz, Tamás Romero, Alfonso E. Sasidharan, Rajkumar Yang, Haixuan Paccanaro, Alberto Gillis, Jesse Sedeño-Cortés, Adriana E. Pavlidis, Paul Feng, Shou Cejuela, Juan M. Goldberg, Tatyana Hamp, Tobias Richter, Lothar Salamov, Asaf Gabaldon, Toni Marcet-Houben, Marina Supek, Fran Gong, Qingtian Ning, Wei Zhou, Yuanpeng Tian, Weidong Falda, Marco Fontana, Paolo Lavezzo, Enrico Toppo, Stefano Ferrari, Carlo Giollo, Manuel Piovesan, Damiano Tosatto, Silvio C.E. del Pozo, Angela Fernández, José M. Maietta, Paolo Valencia, Alfonso Tress, Michael L. Benso, Alfredo Di Carlo, Stefano Politano, Gianfranco Savino, Alessandro Rehman, Hafeez Ur Re, Matteo Mesiti, Marco Valentini, Giorgio Bargsten, Joachim W. van Dijk, Aalt D. J. Gemovic, Branislava Glisic, Sanja Perovic, Vladmir Veljkovic, Veljko Veljkovic, Nevena Almeida-e-Silva, Danillo C. Vencio, Ricardo Z. N. Sharan, Malvika Vogel, Jörg Kansakar, Lakesh Zhang, Shanshan Vucetic, Slobodan Wang, Zheng Sternberg, Michael J. E. Wass, Mark N. Huntley, Rachael P. Martin, Maria J. O’Donovan, Claire Robinson, Peter N. Moreau, Yves Tramontano, Anna Babbitt, Patricia C. Brenner, Steven E. Linial, Michal Orengo, Christine A. Rost, Burkhard Greene, Casey S. Mooney, Sean D. Friedberg, Iddo Radivojac, Predrag An expanded evaluation of protein function prediction methods shows an improvement in accuracy |
title | An expanded evaluation of protein function prediction methods shows an improvement in accuracy |
title_full | An expanded evaluation of protein function prediction methods shows an improvement in accuracy |
title_fullStr | An expanded evaluation of protein function prediction methods shows an improvement in accuracy |
title_full_unstemmed | An expanded evaluation of protein function prediction methods shows an improvement in accuracy |
title_short | An expanded evaluation of protein function prediction methods shows an improvement in accuracy |
title_sort | expanded evaluation of protein function prediction methods shows an improvement in accuracy |
topic | Research |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5015320/ https://www.ncbi.nlm.nih.gov/pubmed/27604469 http://dx.doi.org/10.1186/s13059-016-1037-6 |
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anexpandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT perovicvladmir anexpandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT veljkovicveljko anexpandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT veljkovicnevena anexpandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT almeidaesilvadanilloc anexpandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT vencioricardozn anexpandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT sharanmalvika anexpandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT vogeljorg anexpandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT kansakarlakesh anexpandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT zhangshanshan anexpandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT vuceticslobodan anexpandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT wangzheng anexpandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT sternbergmichaelje anexpandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT wassmarkn anexpandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT huntleyrachaelp anexpandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT martinmariaj anexpandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT odonovanclaire anexpandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT robinsonpetern anexpandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT moreauyves anexpandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT tramontanoanna anexpandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT 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expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT shashadennis expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT youngsnoah expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT bonneaurichard expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT linalexandra expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT sahraeiansayedme expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT martellipierluigi expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT profitigiuseppe expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT casadiorita expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT caorenzhi expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT zhongzhaolong expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT chengjianlin expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT altenhoffadrian expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT skuncanives expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT dessimozchristophe expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT dogantunca expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT hakalakai expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT kaewphansuwisa expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT mehryaryfarrokh expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT salakoskitapio expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT ginterfilip 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expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT cozzettodomenico expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT minnecifederico expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT jonesdavidt expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT chapmansamuel expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT bkcdukka expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT khanishitak expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT kiharadaisuke expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT oferdan expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT rappoportnadav expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT sternamos expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT cibrianuhalteelena expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT dennypaul expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT foulgerrebeccae expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT hietareija expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT leggeduncan expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT loveringruthc expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT magranemichele expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT melidoniannan expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT mutowomeullenetprudence expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT pichlerklemens expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT shypitsynaaleksandra expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT libiao expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT zakeripooya expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT elshalsarah expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT trancheventleoncharles expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT dassayoni expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT dawsonnataliel expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT leedavid expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT leesjonathang expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT sillitoeian expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT bhatprajwal expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT nepusztamas expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT romeroalfonsoe expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT sasidharanrajkumar expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT yanghaixuan expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT paccanaroalberto expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT gillisjesse expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT sedenocortesadrianae expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT pavlidispaul expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT fengshou expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT cejuelajuanm expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT goldbergtatyana expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT hamptobias expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT richterlothar expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT salamovasaf expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT gabaldontoni expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT marcethoubenmarina expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT supekfran expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT gongqingtian expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT ningwei expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT zhouyuanpeng expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT tianweidong expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT faldamarco expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT fontanapaolo expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT lavezzoenrico expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT toppostefano expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT ferraricarlo expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT giollomanuel expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT piovesandamiano expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT tosattosilvioce expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT delpozoangela expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT fernandezjosem expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT maiettapaolo expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT valenciaalfonso expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT tressmichaell expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT bensoalfredo expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT dicarlostefano expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT politanogianfranco expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT savinoalessandro expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT rehmanhafeezur expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT rematteo expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT mesitimarco expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT valentinigiorgio expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT bargstenjoachimw expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT vandijkaaltdj expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT gemovicbranislava expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT glisicsanja expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT perovicvladmir expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT veljkovicveljko expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT veljkovicnevena expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT almeidaesilvadanilloc expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT vencioricardozn expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT sharanmalvika expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT vogeljorg expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT kansakarlakesh expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT zhangshanshan expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT vuceticslobodan expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT wangzheng expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT sternbergmichaelje expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT wassmarkn expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT huntleyrachaelp expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT martinmariaj expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT odonovanclaire expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT robinsonpetern expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT moreauyves expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT tramontanoanna expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT babbittpatriciac expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT brennerstevene expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT linialmichal expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT orengochristinea expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT rostburkhard expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT greenecaseys expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT mooneyseand expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT friedbergiddo expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy AT radivojacpredrag expandedevaluationofproteinfunctionpredictionmethodsshowsanimprovementinaccuracy |