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Binding specificities of human RNA-binding proteins toward structured and linear RNA sequences

RNA-binding proteins (RBPs) regulate RNA metabolism at multiple levels by affecting splicing of nascent transcripts, RNA folding, base modification, transport, localization, translation, and stability. Despite their central role in RNA function, the RNA-binding specificities of most RBPs remain unkn...

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Autores principales: Jolma, Arttu, Zhang, Jilin, Mondragón, Estefania, Morgunova, Ekaterina, Kivioja, Teemu, Laverty, Kaitlin U., Yin, Yimeng, Zhu, Fangjie, Bourenkov, Gleb, Morris, Quaid, Hughes, Timothy R., Maher, Louis James, Taipale, Jussi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory Press 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7397871/
https://www.ncbi.nlm.nih.gov/pubmed/32703884
http://dx.doi.org/10.1101/gr.258848.119
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author Jolma, Arttu
Zhang, Jilin
Mondragón, Estefania
Morgunova, Ekaterina
Kivioja, Teemu
Laverty, Kaitlin U.
Yin, Yimeng
Zhu, Fangjie
Bourenkov, Gleb
Morris, Quaid
Hughes, Timothy R.
Maher, Louis James
Taipale, Jussi
author_facet Jolma, Arttu
Zhang, Jilin
Mondragón, Estefania
Morgunova, Ekaterina
Kivioja, Teemu
Laverty, Kaitlin U.
Yin, Yimeng
Zhu, Fangjie
Bourenkov, Gleb
Morris, Quaid
Hughes, Timothy R.
Maher, Louis James
Taipale, Jussi
author_sort Jolma, Arttu
collection PubMed
description RNA-binding proteins (RBPs) regulate RNA metabolism at multiple levels by affecting splicing of nascent transcripts, RNA folding, base modification, transport, localization, translation, and stability. Despite their central role in RNA function, the RNA-binding specificities of most RBPs remain unknown or incompletely defined. To address this, we have assembled a genome-scale collection of RBPs and their RNA-binding domains (RBDs) and assessed their specificities using high-throughput RNA-SELEX (HTR-SELEX). Approximately 70% of RBPs for which we obtained a motif bound to short linear sequences, whereas ∼30% preferred structured motifs folding into stem–loops. We also found that many RBPs can bind to multiple distinctly different motifs. Analysis of the matches of the motifs in human genomic sequences suggested novel roles for many RBPs. We found that three cytoplasmic proteins—ZC3H12A, ZC3H12B, and ZC3H12C—bound to motifs resembling the splice donor sequence, suggesting that these proteins are involved in degradation of cytoplasmic viral and/or unspliced transcripts. Structural analysis revealed that the RNA motif was not bound by the conventional C3H1 RNA-binding domain of ZC3H12B. Instead, the RNA motif was bound by the ZC3H12B's PilT N terminus (PIN) RNase domain, revealing a potential mechanism by which unconventional RBDs containing active sites or molecule-binding pockets could interact with short, structured RNA molecules. Our collection containing 145 high-resolution binding specificity models for 86 RBPs is the largest systematic resource for the analysis of human RBPs and will greatly facilitate future analysis of the various biological roles of this important class of proteins.
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spelling pubmed-73978712020-08-13 Binding specificities of human RNA-binding proteins toward structured and linear RNA sequences Jolma, Arttu Zhang, Jilin Mondragón, Estefania Morgunova, Ekaterina Kivioja, Teemu Laverty, Kaitlin U. Yin, Yimeng Zhu, Fangjie Bourenkov, Gleb Morris, Quaid Hughes, Timothy R. Maher, Louis James Taipale, Jussi Genome Res Research RNA-binding proteins (RBPs) regulate RNA metabolism at multiple levels by affecting splicing of nascent transcripts, RNA folding, base modification, transport, localization, translation, and stability. Despite their central role in RNA function, the RNA-binding specificities of most RBPs remain unknown or incompletely defined. To address this, we have assembled a genome-scale collection of RBPs and their RNA-binding domains (RBDs) and assessed their specificities using high-throughput RNA-SELEX (HTR-SELEX). Approximately 70% of RBPs for which we obtained a motif bound to short linear sequences, whereas ∼30% preferred structured motifs folding into stem–loops. We also found that many RBPs can bind to multiple distinctly different motifs. Analysis of the matches of the motifs in human genomic sequences suggested novel roles for many RBPs. We found that three cytoplasmic proteins—ZC3H12A, ZC3H12B, and ZC3H12C—bound to motifs resembling the splice donor sequence, suggesting that these proteins are involved in degradation of cytoplasmic viral and/or unspliced transcripts. Structural analysis revealed that the RNA motif was not bound by the conventional C3H1 RNA-binding domain of ZC3H12B. Instead, the RNA motif was bound by the ZC3H12B's PilT N terminus (PIN) RNase domain, revealing a potential mechanism by which unconventional RBDs containing active sites or molecule-binding pockets could interact with short, structured RNA molecules. Our collection containing 145 high-resolution binding specificity models for 86 RBPs is the largest systematic resource for the analysis of human RBPs and will greatly facilitate future analysis of the various biological roles of this important class of proteins. Cold Spring Harbor Laboratory Press 2020-07 /pmc/articles/PMC7397871/ /pubmed/32703884 http://dx.doi.org/10.1101/gr.258848.119 Text en © 2020 Jolma et al.; Published by Cold Spring Harbor Laboratory Press http://creativecommons.org/licenses/by-nc/4.0/ This article, published in Genome Research, is available under a Creative Commons License (Attribution-NonCommercial 4.0 International), as described at http://creativecommons.org/licenses/by-nc/4.0/.
spellingShingle Research
Jolma, Arttu
Zhang, Jilin
Mondragón, Estefania
Morgunova, Ekaterina
Kivioja, Teemu
Laverty, Kaitlin U.
Yin, Yimeng
Zhu, Fangjie
Bourenkov, Gleb
Morris, Quaid
Hughes, Timothy R.
Maher, Louis James
Taipale, Jussi
Binding specificities of human RNA-binding proteins toward structured and linear RNA sequences
title Binding specificities of human RNA-binding proteins toward structured and linear RNA sequences
title_full Binding specificities of human RNA-binding proteins toward structured and linear RNA sequences
title_fullStr Binding specificities of human RNA-binding proteins toward structured and linear RNA sequences
title_full_unstemmed Binding specificities of human RNA-binding proteins toward structured and linear RNA sequences
title_short Binding specificities of human RNA-binding proteins toward structured and linear RNA sequences
title_sort binding specificities of human rna-binding proteins toward structured and linear rna sequences
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7397871/
https://www.ncbi.nlm.nih.gov/pubmed/32703884
http://dx.doi.org/10.1101/gr.258848.119
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