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Evolutionarily conserved inhibitory uORFs sensitize Hox mRNA translation to start codon selection stringency

Translation start site selection in eukaryotes is influenced by context nucleotides flanking the AUG codon and by levels of the eukaryotic translation initiation factors eIF1 and eIF5. In a search of mammalian genes, we identified five homeobox (Hox) gene paralogs initiated by AUG codons in conserve...

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Autores principales: Ivanov, Ivaylo P., Saba, James A., Fan, Chen-Ming, Wang, Ji, Firth, Andrew E., Cao, Chune, Green, Rachel, Dever, Thomas E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8892498/
https://www.ncbi.nlm.nih.gov/pubmed/35217614
http://dx.doi.org/10.1073/pnas.2117226119
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author Ivanov, Ivaylo P.
Saba, James A.
Fan, Chen-Ming
Wang, Ji
Firth, Andrew E.
Cao, Chune
Green, Rachel
Dever, Thomas E.
author_facet Ivanov, Ivaylo P.
Saba, James A.
Fan, Chen-Ming
Wang, Ji
Firth, Andrew E.
Cao, Chune
Green, Rachel
Dever, Thomas E.
author_sort Ivanov, Ivaylo P.
collection PubMed
description Translation start site selection in eukaryotes is influenced by context nucleotides flanking the AUG codon and by levels of the eukaryotic translation initiation factors eIF1 and eIF5. In a search of mammalian genes, we identified five homeobox (Hox) gene paralogs initiated by AUG codons in conserved suboptimal context as well as 13 Hox genes that contain evolutionarily conserved upstream open reading frames (uORFs) that initiate at AUG codons in poor sequence context. An analysis of published cap analysis of gene expression sequencing (CAGE-seq) data and generated CAGE-seq data for messenger RNAs (mRNAs) from mouse somites revealed that the 5′ leaders of Hox mRNAs of interest contain conserved uORFs, are generally much shorter than reported, and lack previously proposed internal ribosome entry site elements. We show that the conserved uORFs inhibit Hox reporter expression and that altering the stringency of start codon selection by overexpressing eIF1 or eIF5 modulates the expression of Hox reporters. We also show that modifying ribosome homeostasis by depleting a large ribosomal subunit protein or treating cells with sublethal concentrations of puromycin leads to lower stringency of start codon selection. Thus, altering global translation can confer gene-specific effects through altered start codon selection stringency.
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spelling pubmed-88924982022-08-25 Evolutionarily conserved inhibitory uORFs sensitize Hox mRNA translation to start codon selection stringency Ivanov, Ivaylo P. Saba, James A. Fan, Chen-Ming Wang, Ji Firth, Andrew E. Cao, Chune Green, Rachel Dever, Thomas E. Proc Natl Acad Sci U S A Biological Sciences Translation start site selection in eukaryotes is influenced by context nucleotides flanking the AUG codon and by levels of the eukaryotic translation initiation factors eIF1 and eIF5. In a search of mammalian genes, we identified five homeobox (Hox) gene paralogs initiated by AUG codons in conserved suboptimal context as well as 13 Hox genes that contain evolutionarily conserved upstream open reading frames (uORFs) that initiate at AUG codons in poor sequence context. An analysis of published cap analysis of gene expression sequencing (CAGE-seq) data and generated CAGE-seq data for messenger RNAs (mRNAs) from mouse somites revealed that the 5′ leaders of Hox mRNAs of interest contain conserved uORFs, are generally much shorter than reported, and lack previously proposed internal ribosome entry site elements. We show that the conserved uORFs inhibit Hox reporter expression and that altering the stringency of start codon selection by overexpressing eIF1 or eIF5 modulates the expression of Hox reporters. We also show that modifying ribosome homeostasis by depleting a large ribosomal subunit protein or treating cells with sublethal concentrations of puromycin leads to lower stringency of start codon selection. Thus, altering global translation can confer gene-specific effects through altered start codon selection stringency. National Academy of Sciences 2022-02-25 2022-03-01 /pmc/articles/PMC8892498/ /pubmed/35217614 http://dx.doi.org/10.1073/pnas.2117226119 Text en Copyright © 2022 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by-nc-nd/4.0/This article is distributed under Creative Commons Attribution-NonCommercial-NoDerivatives License 4.0 (CC BY-NC-ND) (https://creativecommons.org/licenses/by-nc-nd/4.0/) .
spellingShingle Biological Sciences
Ivanov, Ivaylo P.
Saba, James A.
Fan, Chen-Ming
Wang, Ji
Firth, Andrew E.
Cao, Chune
Green, Rachel
Dever, Thomas E.
Evolutionarily conserved inhibitory uORFs sensitize Hox mRNA translation to start codon selection stringency
title Evolutionarily conserved inhibitory uORFs sensitize Hox mRNA translation to start codon selection stringency
title_full Evolutionarily conserved inhibitory uORFs sensitize Hox mRNA translation to start codon selection stringency
title_fullStr Evolutionarily conserved inhibitory uORFs sensitize Hox mRNA translation to start codon selection stringency
title_full_unstemmed Evolutionarily conserved inhibitory uORFs sensitize Hox mRNA translation to start codon selection stringency
title_short Evolutionarily conserved inhibitory uORFs sensitize Hox mRNA translation to start codon selection stringency
title_sort evolutionarily conserved inhibitory uorfs sensitize hox mrna translation to start codon selection stringency
topic Biological Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8892498/
https://www.ncbi.nlm.nih.gov/pubmed/35217614
http://dx.doi.org/10.1073/pnas.2117226119
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