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ELM—the database of eukaryotic linear motifs

Linear motifs are short, evolutionarily plastic components of regulatory proteins and provide low-affinity interaction interfaces. These compact modules play central roles in mediating every aspect of the regulatory functionality of the cell. They are particularly prominent in mediating cell signali...

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Autores principales: Dinkel, Holger, Michael, Sushama, Weatheritt, Robert J., Davey, Norman E., Van Roey, Kim, Altenberg, Brigitte, Toedt, Grischa, Uyar, Bora, Seiler, Markus, Budd, Aidan, Jödicke, Lisa, Dammert, Marcel A., Schroeter, Christian, Hammer, Maria, Schmidt, Tobias, Jehl, Peter, McGuigan, Caroline, Dymecka, Magdalena, Chica, Claudia, Luck, Katja, Via, Allegra, Chatr-aryamontri, Andrew, Haslam, Niall, Grebnev, Gleb, Edwards, Richard J., Steinmetz, Michel O., Meiselbach, Heike, Diella, Francesca, Gibson, Toby J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3245074/
https://www.ncbi.nlm.nih.gov/pubmed/22110040
http://dx.doi.org/10.1093/nar/gkr1064
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author Dinkel, Holger
Michael, Sushama
Weatheritt, Robert J.
Davey, Norman E.
Van Roey, Kim
Altenberg, Brigitte
Toedt, Grischa
Uyar, Bora
Seiler, Markus
Budd, Aidan
Jödicke, Lisa
Dammert, Marcel A.
Schroeter, Christian
Hammer, Maria
Schmidt, Tobias
Jehl, Peter
McGuigan, Caroline
Dymecka, Magdalena
Chica, Claudia
Luck, Katja
Via, Allegra
Chatr-aryamontri, Andrew
Haslam, Niall
Grebnev, Gleb
Edwards, Richard J.
Steinmetz, Michel O.
Meiselbach, Heike
Diella, Francesca
Gibson, Toby J.
author_facet Dinkel, Holger
Michael, Sushama
Weatheritt, Robert J.
Davey, Norman E.
Van Roey, Kim
Altenberg, Brigitte
Toedt, Grischa
Uyar, Bora
Seiler, Markus
Budd, Aidan
Jödicke, Lisa
Dammert, Marcel A.
Schroeter, Christian
Hammer, Maria
Schmidt, Tobias
Jehl, Peter
McGuigan, Caroline
Dymecka, Magdalena
Chica, Claudia
Luck, Katja
Via, Allegra
Chatr-aryamontri, Andrew
Haslam, Niall
Grebnev, Gleb
Edwards, Richard J.
Steinmetz, Michel O.
Meiselbach, Heike
Diella, Francesca
Gibson, Toby J.
author_sort Dinkel, Holger
collection PubMed
description Linear motifs are short, evolutionarily plastic components of regulatory proteins and provide low-affinity interaction interfaces. These compact modules play central roles in mediating every aspect of the regulatory functionality of the cell. They are particularly prominent in mediating cell signaling, controlling protein turnover and directing protein localization. Given their importance, our understanding of motifs is surprisingly limited, largely as a result of the difficulty of discovery, both experimentally and computationally. The Eukaryotic Linear Motif (ELM) resource at http://elm.eu.org provides the biological community with a comprehensive database of known experimentally validated motifs, and an exploratory tool to discover putative linear motifs in user-submitted protein sequences. The current update of the ELM database comprises 1800 annotated motif instances representing 170 distinct functional classes, including approximately 500 novel instances and 24 novel classes. Several older motif class entries have been also revisited, improving annotation and adding novel instances. Furthermore, addition of full-text search capabilities, an enhanced interface and simplified batch download has improved the overall accessibility of the ELM data. The motif discovery portion of the ELM resource has added conservation, and structural attributes have been incorporated to aid users to discriminate biologically relevant motifs from stochastically occurring non-functional instances.
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spelling pubmed-32450742012-01-10 ELM—the database of eukaryotic linear motifs Dinkel, Holger Michael, Sushama Weatheritt, Robert J. Davey, Norman E. Van Roey, Kim Altenberg, Brigitte Toedt, Grischa Uyar, Bora Seiler, Markus Budd, Aidan Jödicke, Lisa Dammert, Marcel A. Schroeter, Christian Hammer, Maria Schmidt, Tobias Jehl, Peter McGuigan, Caroline Dymecka, Magdalena Chica, Claudia Luck, Katja Via, Allegra Chatr-aryamontri, Andrew Haslam, Niall Grebnev, Gleb Edwards, Richard J. Steinmetz, Michel O. Meiselbach, Heike Diella, Francesca Gibson, Toby J. Nucleic Acids Res Articles Linear motifs are short, evolutionarily plastic components of regulatory proteins and provide low-affinity interaction interfaces. These compact modules play central roles in mediating every aspect of the regulatory functionality of the cell. They are particularly prominent in mediating cell signaling, controlling protein turnover and directing protein localization. Given their importance, our understanding of motifs is surprisingly limited, largely as a result of the difficulty of discovery, both experimentally and computationally. The Eukaryotic Linear Motif (ELM) resource at http://elm.eu.org provides the biological community with a comprehensive database of known experimentally validated motifs, and an exploratory tool to discover putative linear motifs in user-submitted protein sequences. The current update of the ELM database comprises 1800 annotated motif instances representing 170 distinct functional classes, including approximately 500 novel instances and 24 novel classes. Several older motif class entries have been also revisited, improving annotation and adding novel instances. Furthermore, addition of full-text search capabilities, an enhanced interface and simplified batch download has improved the overall accessibility of the ELM data. The motif discovery portion of the ELM resource has added conservation, and structural attributes have been incorporated to aid users to discriminate biologically relevant motifs from stochastically occurring non-functional instances. Oxford University Press 2012-01 2011-11-21 /pmc/articles/PMC3245074/ /pubmed/22110040 http://dx.doi.org/10.1093/nar/gkr1064 Text en © The Author(s) 2011. Published by Oxford University Press. http://creativecommons.org/licenses/by-nc/3.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/3.0), which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Articles
Dinkel, Holger
Michael, Sushama
Weatheritt, Robert J.
Davey, Norman E.
Van Roey, Kim
Altenberg, Brigitte
Toedt, Grischa
Uyar, Bora
Seiler, Markus
Budd, Aidan
Jödicke, Lisa
Dammert, Marcel A.
Schroeter, Christian
Hammer, Maria
Schmidt, Tobias
Jehl, Peter
McGuigan, Caroline
Dymecka, Magdalena
Chica, Claudia
Luck, Katja
Via, Allegra
Chatr-aryamontri, Andrew
Haslam, Niall
Grebnev, Gleb
Edwards, Richard J.
Steinmetz, Michel O.
Meiselbach, Heike
Diella, Francesca
Gibson, Toby J.
ELM—the database of eukaryotic linear motifs
title ELM—the database of eukaryotic linear motifs
title_full ELM—the database of eukaryotic linear motifs
title_fullStr ELM—the database of eukaryotic linear motifs
title_full_unstemmed ELM—the database of eukaryotic linear motifs
title_short ELM—the database of eukaryotic linear motifs
title_sort elm—the database of eukaryotic linear motifs
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3245074/
https://www.ncbi.nlm.nih.gov/pubmed/22110040
http://dx.doi.org/10.1093/nar/gkr1064
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