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TRUB1 is the predominant pseudouridine synthase acting on mammalian mRNA via a predictable and conserved code

Following synthesis, RNA can be modified with over 100 chemically distinct modifications, which can potentially regulate RNA expression post-transcriptionally. Pseudouridine (Ψ) was recently established to be widespread and dynamically regulated on yeast mRNA, but less is known about Ψ presence, reg...

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Autores principales: Safra, Modi, Nir, Ronit, Farouq, Daneyal, Slutzkin, Ilya Vainberg, Schwartz, Schraga
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/PMC5340967/
https://www.ncbi.nlm.nih.gov/pubmed/28073919
http://dx.doi.org/10.1101/gr.207613.116
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author Safra, Modi
Nir, Ronit
Farouq, Daneyal
Slutzkin, Ilya Vainberg
Schwartz, Schraga
author_facet Safra, Modi
Nir, Ronit
Farouq, Daneyal
Slutzkin, Ilya Vainberg
Schwartz, Schraga
author_sort Safra, Modi
collection PubMed
description Following synthesis, RNA can be modified with over 100 chemically distinct modifications, which can potentially regulate RNA expression post-transcriptionally. Pseudouridine (Ψ) was recently established to be widespread and dynamically regulated on yeast mRNA, but less is known about Ψ presence, regulation, and biogenesis in mammalian mRNA. Here, we sought to characterize the Ψ landscape on mammalian mRNA, to identify the main Ψ-synthases (PUSs) catalyzing Ψ formation, and to understand the factors governing their specificity toward selected targets. We first developed a framework allowing analysis, evaluation, and integration of Ψ mappings, which we applied to >2.5 billion reads from 30 human samples. These maps, complemented with genetic perturbations, allowed us to uncover TRUB1 and PUS7 as the two key PUSs acting on mammalian mRNA and to computationally model the sequence and structural elements governing the specificity of TRUB1, achieving near-perfect prediction of its substrates (AUC = 0.974). We then validated and extended these maps and the inferred specificity of TRUB1 using massively parallel reporter assays in which we monitored Ψ levels at thousands of synthetically designed sequence variants comprising either the sequences surrounding pseudouridylation targets or systematically designed mutants perturbing RNA sequence and structure. Our findings provide an extensive and high-quality characterization of the transcriptome-wide distribution of pseudouridine in human and the factors governing it and provide an important resource for the community, paving the path toward functional and mechanistic dissection of this emerging layer of post-transcriptional regulation.
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spelling pubmed-53409672017-09-01 TRUB1 is the predominant pseudouridine synthase acting on mammalian mRNA via a predictable and conserved code Safra, Modi Nir, Ronit Farouq, Daneyal Slutzkin, Ilya Vainberg Schwartz, Schraga Genome Res Research Following synthesis, RNA can be modified with over 100 chemically distinct modifications, which can potentially regulate RNA expression post-transcriptionally. Pseudouridine (Ψ) was recently established to be widespread and dynamically regulated on yeast mRNA, but less is known about Ψ presence, regulation, and biogenesis in mammalian mRNA. Here, we sought to characterize the Ψ landscape on mammalian mRNA, to identify the main Ψ-synthases (PUSs) catalyzing Ψ formation, and to understand the factors governing their specificity toward selected targets. We first developed a framework allowing analysis, evaluation, and integration of Ψ mappings, which we applied to >2.5 billion reads from 30 human samples. These maps, complemented with genetic perturbations, allowed us to uncover TRUB1 and PUS7 as the two key PUSs acting on mammalian mRNA and to computationally model the sequence and structural elements governing the specificity of TRUB1, achieving near-perfect prediction of its substrates (AUC = 0.974). We then validated and extended these maps and the inferred specificity of TRUB1 using massively parallel reporter assays in which we monitored Ψ levels at thousands of synthetically designed sequence variants comprising either the sequences surrounding pseudouridylation targets or systematically designed mutants perturbing RNA sequence and structure. Our findings provide an extensive and high-quality characterization of the transcriptome-wide distribution of pseudouridine in human and the factors governing it and provide an important resource for the community, paving the path toward functional and mechanistic dissection of this emerging layer of post-transcriptional regulation. Cold Spring Harbor Laboratory Press 2017-03 /pmc/articles/PMC5340967/ /pubmed/28073919 http://dx.doi.org/10.1101/gr.207613.116 Text en © 2017 Safra 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 Research
Safra, Modi
Nir, Ronit
Farouq, Daneyal
Slutzkin, Ilya Vainberg
Schwartz, Schraga
TRUB1 is the predominant pseudouridine synthase acting on mammalian mRNA via a predictable and conserved code
title TRUB1 is the predominant pseudouridine synthase acting on mammalian mRNA via a predictable and conserved code
title_full TRUB1 is the predominant pseudouridine synthase acting on mammalian mRNA via a predictable and conserved code
title_fullStr TRUB1 is the predominant pseudouridine synthase acting on mammalian mRNA via a predictable and conserved code
title_full_unstemmed TRUB1 is the predominant pseudouridine synthase acting on mammalian mRNA via a predictable and conserved code
title_short TRUB1 is the predominant pseudouridine synthase acting on mammalian mRNA via a predictable and conserved code
title_sort trub1 is the predominant pseudouridine synthase acting on mammalian mrna via a predictable and conserved code
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5340967/
https://www.ncbi.nlm.nih.gov/pubmed/28073919
http://dx.doi.org/10.1101/gr.207613.116
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