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An atlas of alternative splicing profiles and functional associations reveals new regulatory programs and genes that simultaneously express multiple major isoforms

Alternative splicing (AS) generates remarkable regulatory and proteomic complexity in metazoans. However, the functions of most AS events are not known, and programs of regulated splicing remain to be identified. To address these challenges, we describe the Vertebrate Alternative Splicing and Transc...

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Autores principales: Tapial, Javier, Ha, Kevin C.H., Sterne-Weiler, Timothy, Gohr, André, Braunschweig, Ulrich, Hermoso-Pulido, Antonio, Quesnel-Vallières, Mathieu, Permanyer, Jon, Sodaei, Reza, Marquez, Yamile, Cozzuto, Luca, Wang, Xinchen, Gómez-Velázquez, Melisa, Rayon, Teresa, Manzanares, Miguel, Ponomarenko, Julia, Blencowe, Benjamin J., Irimia, Manuel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory Press 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5630039/
https://www.ncbi.nlm.nih.gov/pubmed/28855263
http://dx.doi.org/10.1101/gr.220962.117
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author Tapial, Javier
Ha, Kevin C.H.
Sterne-Weiler, Timothy
Gohr, André
Braunschweig, Ulrich
Hermoso-Pulido, Antonio
Quesnel-Vallières, Mathieu
Permanyer, Jon
Sodaei, Reza
Marquez, Yamile
Cozzuto, Luca
Wang, Xinchen
Gómez-Velázquez, Melisa
Rayon, Teresa
Manzanares, Miguel
Ponomarenko, Julia
Blencowe, Benjamin J.
Irimia, Manuel
author_facet Tapial, Javier
Ha, Kevin C.H.
Sterne-Weiler, Timothy
Gohr, André
Braunschweig, Ulrich
Hermoso-Pulido, Antonio
Quesnel-Vallières, Mathieu
Permanyer, Jon
Sodaei, Reza
Marquez, Yamile
Cozzuto, Luca
Wang, Xinchen
Gómez-Velázquez, Melisa
Rayon, Teresa
Manzanares, Miguel
Ponomarenko, Julia
Blencowe, Benjamin J.
Irimia, Manuel
author_sort Tapial, Javier
collection PubMed
description Alternative splicing (AS) generates remarkable regulatory and proteomic complexity in metazoans. However, the functions of most AS events are not known, and programs of regulated splicing remain to be identified. To address these challenges, we describe the Vertebrate Alternative Splicing and Transcription Database (VastDB), the largest resource of genome-wide, quantitative profiles of AS events assembled to date. VastDB provides readily accessible quantitative information on the inclusion levels and functional associations of AS events detected in RNA-seq data from diverse vertebrate cell and tissue types, as well as developmental stages. The VastDB profiles reveal extensive new intergenic and intragenic regulatory relationships among different classes of AS and previously unknown and conserved landscapes of tissue-regulated exons. Contrary to recent reports concluding that nearly all human genes express a single major isoform, VastDB provides evidence that at least 48% of multiexonic protein-coding genes express multiple splice variants that are highly regulated in a cell/tissue-specific manner, and that >18% of genes simultaneously express multiple major isoforms across diverse cell and tissue types. Isoforms encoded by the latter set of genes are generally coexpressed in the same cells and are often engaged by translating ribosomes. Moreover, they are encoded by genes that are significantly enriched in functions associated with transcriptional control, implying they may have an important and wide-ranging role in controlling cellular activities. VastDB thus provides an unprecedented resource for investigations of AS function and regulation.
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spelling pubmed-56300392018-04-01 An atlas of alternative splicing profiles and functional associations reveals new regulatory programs and genes that simultaneously express multiple major isoforms Tapial, Javier Ha, Kevin C.H. Sterne-Weiler, Timothy Gohr, André Braunschweig, Ulrich Hermoso-Pulido, Antonio Quesnel-Vallières, Mathieu Permanyer, Jon Sodaei, Reza Marquez, Yamile Cozzuto, Luca Wang, Xinchen Gómez-Velázquez, Melisa Rayon, Teresa Manzanares, Miguel Ponomarenko, Julia Blencowe, Benjamin J. Irimia, Manuel Genome Res Resource Alternative splicing (AS) generates remarkable regulatory and proteomic complexity in metazoans. However, the functions of most AS events are not known, and programs of regulated splicing remain to be identified. To address these challenges, we describe the Vertebrate Alternative Splicing and Transcription Database (VastDB), the largest resource of genome-wide, quantitative profiles of AS events assembled to date. VastDB provides readily accessible quantitative information on the inclusion levels and functional associations of AS events detected in RNA-seq data from diverse vertebrate cell and tissue types, as well as developmental stages. The VastDB profiles reveal extensive new intergenic and intragenic regulatory relationships among different classes of AS and previously unknown and conserved landscapes of tissue-regulated exons. Contrary to recent reports concluding that nearly all human genes express a single major isoform, VastDB provides evidence that at least 48% of multiexonic protein-coding genes express multiple splice variants that are highly regulated in a cell/tissue-specific manner, and that >18% of genes simultaneously express multiple major isoforms across diverse cell and tissue types. Isoforms encoded by the latter set of genes are generally coexpressed in the same cells and are often engaged by translating ribosomes. Moreover, they are encoded by genes that are significantly enriched in functions associated with transcriptional control, implying they may have an important and wide-ranging role in controlling cellular activities. VastDB thus provides an unprecedented resource for investigations of AS function and regulation. Cold Spring Harbor Laboratory Press 2017-10 /pmc/articles/PMC5630039/ /pubmed/28855263 http://dx.doi.org/10.1101/gr.220962.117 Text en © 2017 Tapial et al.; Published by Cold Spring Harbor Laboratory Press http://creativecommons.org/licenses/by-nc/4.0/ This article is distributed exclusively by Cold Spring Harbor Laboratory Press for the first six months after the full-issue publication date (see http://genome.cshlp.org/site/misc/terms.xhtml). After six months, it is available under a Creative Commons License (Attribution-NonCommercial 4.0 International), as described at http://creativecommons.org/licenses/by-nc/4.0/.
spellingShingle Resource
Tapial, Javier
Ha, Kevin C.H.
Sterne-Weiler, Timothy
Gohr, André
Braunschweig, Ulrich
Hermoso-Pulido, Antonio
Quesnel-Vallières, Mathieu
Permanyer, Jon
Sodaei, Reza
Marquez, Yamile
Cozzuto, Luca
Wang, Xinchen
Gómez-Velázquez, Melisa
Rayon, Teresa
Manzanares, Miguel
Ponomarenko, Julia
Blencowe, Benjamin J.
Irimia, Manuel
An atlas of alternative splicing profiles and functional associations reveals new regulatory programs and genes that simultaneously express multiple major isoforms
title An atlas of alternative splicing profiles and functional associations reveals new regulatory programs and genes that simultaneously express multiple major isoforms
title_full An atlas of alternative splicing profiles and functional associations reveals new regulatory programs and genes that simultaneously express multiple major isoforms
title_fullStr An atlas of alternative splicing profiles and functional associations reveals new regulatory programs and genes that simultaneously express multiple major isoforms
title_full_unstemmed An atlas of alternative splicing profiles and functional associations reveals new regulatory programs and genes that simultaneously express multiple major isoforms
title_short An atlas of alternative splicing profiles and functional associations reveals new regulatory programs and genes that simultaneously express multiple major isoforms
title_sort atlas of alternative splicing profiles and functional associations reveals new regulatory programs and genes that simultaneously express multiple major isoforms
topic Resource
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5630039/
https://www.ncbi.nlm.nih.gov/pubmed/28855263
http://dx.doi.org/10.1101/gr.220962.117
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