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Frac-seq reveals isoform-specific recruitment to polyribosomes

Pre-mRNA splicing is required for the accurate expression of virtually all human protein coding genes. However, splicing also plays important roles in coordinating subsequent steps of pre-mRNA processing such as polyadenylation and mRNA export. Here, we test the hypothesis that nuclear pre-mRNA proc...

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Autores principales: Sterne-Weiler, Timothy, Martinez-Nunez, Rocio Teresa, Howard, Jonathan M., Cvitovik, Ivan, Katzman, Sol, Tariq, Muhammad A., Pourmand, Nader, Sanford, Jeremy R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory Press 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3787259/
https://www.ncbi.nlm.nih.gov/pubmed/23783272
http://dx.doi.org/10.1101/gr.148585.112
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author Sterne-Weiler, Timothy
Martinez-Nunez, Rocio Teresa
Howard, Jonathan M.
Cvitovik, Ivan
Katzman, Sol
Tariq, Muhammad A.
Pourmand, Nader
Sanford, Jeremy R.
author_facet Sterne-Weiler, Timothy
Martinez-Nunez, Rocio Teresa
Howard, Jonathan M.
Cvitovik, Ivan
Katzman, Sol
Tariq, Muhammad A.
Pourmand, Nader
Sanford, Jeremy R.
author_sort Sterne-Weiler, Timothy
collection PubMed
description Pre-mRNA splicing is required for the accurate expression of virtually all human protein coding genes. However, splicing also plays important roles in coordinating subsequent steps of pre-mRNA processing such as polyadenylation and mRNA export. Here, we test the hypothesis that nuclear pre-mRNA processing influences the polyribosome association of alternative mRNA isoforms. By comparing isoform ratios in cytoplasmic and polyribosomal extracts, we determined that the alternative products of ∼30% (597/1954) of mRNA processing events are differentially partitioned between these subcellular fractions. Many of the events exhibiting isoform-specific polyribosome association are highly conserved across mammalian genomes, underscoring their possible biological importance. We find that differences in polyribosome association may be explained, at least in part by the observation that alternative splicing alters the cis-regulatory landscape of mRNAs isoforms. For example, inclusion or exclusion of upstream open reading frames (uORFs) in the 5′UTR as well as Alu-elements and microRNA target sites in the 3′UTR have a strong influence on polyribosome association of alternative mRNA isoforms. Taken together, our data demonstrate for the first time the potential link between alternative splicing and translational control of the resultant mRNA isoforms.
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spelling pubmed-37872592013-10-21 Frac-seq reveals isoform-specific recruitment to polyribosomes Sterne-Weiler, Timothy Martinez-Nunez, Rocio Teresa Howard, Jonathan M. Cvitovik, Ivan Katzman, Sol Tariq, Muhammad A. Pourmand, Nader Sanford, Jeremy R. Genome Res Research Pre-mRNA splicing is required for the accurate expression of virtually all human protein coding genes. However, splicing also plays important roles in coordinating subsequent steps of pre-mRNA processing such as polyadenylation and mRNA export. Here, we test the hypothesis that nuclear pre-mRNA processing influences the polyribosome association of alternative mRNA isoforms. By comparing isoform ratios in cytoplasmic and polyribosomal extracts, we determined that the alternative products of ∼30% (597/1954) of mRNA processing events are differentially partitioned between these subcellular fractions. Many of the events exhibiting isoform-specific polyribosome association are highly conserved across mammalian genomes, underscoring their possible biological importance. We find that differences in polyribosome association may be explained, at least in part by the observation that alternative splicing alters the cis-regulatory landscape of mRNAs isoforms. For example, inclusion or exclusion of upstream open reading frames (uORFs) in the 5′UTR as well as Alu-elements and microRNA target sites in the 3′UTR have a strong influence on polyribosome association of alternative mRNA isoforms. Taken together, our data demonstrate for the first time the potential link between alternative splicing and translational control of the resultant mRNA isoforms. Cold Spring Harbor Laboratory Press 2013-10 /pmc/articles/PMC3787259/ /pubmed/23783272 http://dx.doi.org/10.1101/gr.148585.112 Text en © 2013, Published by Cold Spring Harbor Laboratory Press http://creativecommons.org/licenses/by-nc/3.0/ This article, published in Genome Research, is available under a Creative Commons License (Attribution-NonCommercial 3.0 Unported), as described at http://creativecommons.org/licenses/by-nc/3.0/.
spellingShingle Research
Sterne-Weiler, Timothy
Martinez-Nunez, Rocio Teresa
Howard, Jonathan M.
Cvitovik, Ivan
Katzman, Sol
Tariq, Muhammad A.
Pourmand, Nader
Sanford, Jeremy R.
Frac-seq reveals isoform-specific recruitment to polyribosomes
title Frac-seq reveals isoform-specific recruitment to polyribosomes
title_full Frac-seq reveals isoform-specific recruitment to polyribosomes
title_fullStr Frac-seq reveals isoform-specific recruitment to polyribosomes
title_full_unstemmed Frac-seq reveals isoform-specific recruitment to polyribosomes
title_short Frac-seq reveals isoform-specific recruitment to polyribosomes
title_sort frac-seq reveals isoform-specific recruitment to polyribosomes
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3787259/
https://www.ncbi.nlm.nih.gov/pubmed/23783272
http://dx.doi.org/10.1101/gr.148585.112
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