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ELM: the status of the 2010 eukaryotic linear motif resource

Linear motifs are short segments of multidomain proteins that provide regulatory functions independently of protein tertiary structure. Much of intracellular signalling passes through protein modifications at linear motifs. Many thousands of linear motif instances, most notably phosphorylation sites...

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Autores principales: Gould, Cathryn M., Diella, Francesca, Via, Allegra, Puntervoll, Pål, Gemünd, Christine, Chabanis-Davidson, Sophie, Michael, Sushama, Sayadi, Ahmed, Bryne, Jan Christian, Chica, Claudia, Seiler, Markus, Davey, Norman E., Haslam, Niall, Weatheritt, Robert J., Budd, Aidan, Hughes, Tim, Paś, Jakub, Rychlewski, Leszek, Travé, Gilles, Aasland, Rein, Helmer-Citterich, Manuela, Linding, Rune, Gibson, Toby J.
Formato: Texto
Lenguaje:English
Publicado: Oxford University Press 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2808914/
https://www.ncbi.nlm.nih.gov/pubmed/19920119
http://dx.doi.org/10.1093/nar/gkp1016
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author Gould, Cathryn M.
Diella, Francesca
Via, Allegra
Puntervoll, Pål
Gemünd, Christine
Chabanis-Davidson, Sophie
Michael, Sushama
Sayadi, Ahmed
Bryne, Jan Christian
Chica, Claudia
Seiler, Markus
Davey, Norman E.
Haslam, Niall
Weatheritt, Robert J.
Budd, Aidan
Hughes, Tim
Paś, Jakub
Rychlewski, Leszek
Travé, Gilles
Aasland, Rein
Helmer-Citterich, Manuela
Linding, Rune
Gibson, Toby J.
author_facet Gould, Cathryn M.
Diella, Francesca
Via, Allegra
Puntervoll, Pål
Gemünd, Christine
Chabanis-Davidson, Sophie
Michael, Sushama
Sayadi, Ahmed
Bryne, Jan Christian
Chica, Claudia
Seiler, Markus
Davey, Norman E.
Haslam, Niall
Weatheritt, Robert J.
Budd, Aidan
Hughes, Tim
Paś, Jakub
Rychlewski, Leszek
Travé, Gilles
Aasland, Rein
Helmer-Citterich, Manuela
Linding, Rune
Gibson, Toby J.
author_sort Gould, Cathryn M.
collection PubMed
description Linear motifs are short segments of multidomain proteins that provide regulatory functions independently of protein tertiary structure. Much of intracellular signalling passes through protein modifications at linear motifs. Many thousands of linear motif instances, most notably phosphorylation sites, have now been reported. Although clearly very abundant, linear motifs are difficult to predict de novo in protein sequences due to the difficulty of obtaining robust statistical assessments. The ELM resource at http://elm.eu.org/ provides an expanding knowledge base, currently covering 146 known motifs, with annotation that includes >1300 experimentally reported instances. ELM is also an exploratory tool for suggesting new candidates of known linear motifs in proteins of interest. Information about protein domains, protein structure and native disorder, cellular and taxonomic contexts is used to reduce or deprecate false positive matches. Results are graphically displayed in a ‘Bar Code’ format, which also displays known instances from homologous proteins through a novel ‘Instance Mapper’ protocol based on PHI-BLAST. ELM server output provides links to the ELM annotation as well as to a number of remote resources. Using the links, researchers can explore the motifs, proteins, complex structures and associated literature to evaluate whether candidate motifs might be worth experimental investigation.
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spelling pubmed-28089142010-01-20 ELM: the status of the 2010 eukaryotic linear motif resource Gould, Cathryn M. Diella, Francesca Via, Allegra Puntervoll, Pål Gemünd, Christine Chabanis-Davidson, Sophie Michael, Sushama Sayadi, Ahmed Bryne, Jan Christian Chica, Claudia Seiler, Markus Davey, Norman E. Haslam, Niall Weatheritt, Robert J. Budd, Aidan Hughes, Tim Paś, Jakub Rychlewski, Leszek Travé, Gilles Aasland, Rein Helmer-Citterich, Manuela Linding, Rune Gibson, Toby J. Nucleic Acids Res Articles Linear motifs are short segments of multidomain proteins that provide regulatory functions independently of protein tertiary structure. Much of intracellular signalling passes through protein modifications at linear motifs. Many thousands of linear motif instances, most notably phosphorylation sites, have now been reported. Although clearly very abundant, linear motifs are difficult to predict de novo in protein sequences due to the difficulty of obtaining robust statistical assessments. The ELM resource at http://elm.eu.org/ provides an expanding knowledge base, currently covering 146 known motifs, with annotation that includes >1300 experimentally reported instances. ELM is also an exploratory tool for suggesting new candidates of known linear motifs in proteins of interest. Information about protein domains, protein structure and native disorder, cellular and taxonomic contexts is used to reduce or deprecate false positive matches. Results are graphically displayed in a ‘Bar Code’ format, which also displays known instances from homologous proteins through a novel ‘Instance Mapper’ protocol based on PHI-BLAST. ELM server output provides links to the ELM annotation as well as to a number of remote resources. Using the links, researchers can explore the motifs, proteins, complex structures and associated literature to evaluate whether candidate motifs might be worth experimental investigation. Oxford University Press 2010-01 2009-11-17 /pmc/articles/PMC2808914/ /pubmed/19920119 http://dx.doi.org/10.1093/nar/gkp1016 Text en © The Author(s) 2009. Published by Oxford University Press. http://creativecommons.org/licenses/by-nc/2.5/uk/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/2.5/uk/) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Articles
Gould, Cathryn M.
Diella, Francesca
Via, Allegra
Puntervoll, Pål
Gemünd, Christine
Chabanis-Davidson, Sophie
Michael, Sushama
Sayadi, Ahmed
Bryne, Jan Christian
Chica, Claudia
Seiler, Markus
Davey, Norman E.
Haslam, Niall
Weatheritt, Robert J.
Budd, Aidan
Hughes, Tim
Paś, Jakub
Rychlewski, Leszek
Travé, Gilles
Aasland, Rein
Helmer-Citterich, Manuela
Linding, Rune
Gibson, Toby J.
ELM: the status of the 2010 eukaryotic linear motif resource
title ELM: the status of the 2010 eukaryotic linear motif resource
title_full ELM: the status of the 2010 eukaryotic linear motif resource
title_fullStr ELM: the status of the 2010 eukaryotic linear motif resource
title_full_unstemmed ELM: the status of the 2010 eukaryotic linear motif resource
title_short ELM: the status of the 2010 eukaryotic linear motif resource
title_sort elm: the status of the 2010 eukaryotic linear motif resource
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2808914/
https://www.ncbi.nlm.nih.gov/pubmed/19920119
http://dx.doi.org/10.1093/nar/gkp1016
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