Ribosome profiling uncovers selective mRNA translation associated with eIF2 phosphorylation in erythroid progenitors.

The regulation of translation initiation factor 2 (eIF2) is important for erythroid survival and differentiation. Lack of iron, a critical component of heme and hemoglobin, activates Heme Regulated Inhibitor (HRI). This results in phosphorylation of eIF2 and reduced eIF2 availability, which inhibits...

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Main Authors: Nahuel A Paolini, Kat S Moore, Franca M di Summa, Ivo F A C Fokkema, Peter A C 't Hoen, Marieke von Lindern
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2018-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC5892948?pdf=render
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spelling doaj-a59e16ce00ad4e449689df39c3c646a22020-11-24T22:08:51ZengPublic Library of Science (PLoS)PLoS ONE1932-62032018-01-01134e019379010.1371/journal.pone.0193790Ribosome profiling uncovers selective mRNA translation associated with eIF2 phosphorylation in erythroid progenitors.Nahuel A PaoliniKat S MooreFranca M di SummaIvo F A C FokkemaPeter A C 't HoenMarieke von LindernThe regulation of translation initiation factor 2 (eIF2) is important for erythroid survival and differentiation. Lack of iron, a critical component of heme and hemoglobin, activates Heme Regulated Inhibitor (HRI). This results in phosphorylation of eIF2 and reduced eIF2 availability, which inhibits protein synthesis. Translation of specific transcripts such as Atf4, however, is enhanced. Upstream open reading frames (uORFs) are key to this regulation. The aim of this study is to investigate how tunicamycin treatment, that induces eIF2 phosphorylation, affects mRNA translation in erythroblasts. Ribosome profiling combined with RNA sequencing was used to determine translation initiation sites and ribosome density on individual transcripts. Treatment of erythroblasts with Tunicamycin (Tm) increased phosphorylation of eIF2 2-fold. At a false discovery rate of 1%, ribosome density was increased for 147 transcripts, among which transcriptional regulators such as Atf4, Tis7/Ifrd1, Pnrc2, Gtf2h, Mbd3, JunB and Kmt2e. Translation of 337 transcripts decreased more than average, among which Dym and Csde1. Ribosome profiling following Harringtonine treatment uncovered novel translation initiation sites and uORFs. Surprisingly, translated uORFs did not predict the sensitivity of transcripts to altered ribosome recruitment in presence or absence of Tm. The regulation of transcription and translation factors in reponse to eIF2 phosphorylation may explain the large overall response to iron deficiency in erythroblasts.http://europepmc.org/articles/PMC5892948?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Nahuel A Paolini
Kat S Moore
Franca M di Summa
Ivo F A C Fokkema
Peter A C 't Hoen
Marieke von Lindern
spellingShingle Nahuel A Paolini
Kat S Moore
Franca M di Summa
Ivo F A C Fokkema
Peter A C 't Hoen
Marieke von Lindern
Ribosome profiling uncovers selective mRNA translation associated with eIF2 phosphorylation in erythroid progenitors.
PLoS ONE
author_facet Nahuel A Paolini
Kat S Moore
Franca M di Summa
Ivo F A C Fokkema
Peter A C 't Hoen
Marieke von Lindern
author_sort Nahuel A Paolini
title Ribosome profiling uncovers selective mRNA translation associated with eIF2 phosphorylation in erythroid progenitors.
title_short Ribosome profiling uncovers selective mRNA translation associated with eIF2 phosphorylation in erythroid progenitors.
title_full Ribosome profiling uncovers selective mRNA translation associated with eIF2 phosphorylation in erythroid progenitors.
title_fullStr Ribosome profiling uncovers selective mRNA translation associated with eIF2 phosphorylation in erythroid progenitors.
title_full_unstemmed Ribosome profiling uncovers selective mRNA translation associated with eIF2 phosphorylation in erythroid progenitors.
title_sort ribosome profiling uncovers selective mrna translation associated with eif2 phosphorylation in erythroid progenitors.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2018-01-01
description The regulation of translation initiation factor 2 (eIF2) is important for erythroid survival and differentiation. Lack of iron, a critical component of heme and hemoglobin, activates Heme Regulated Inhibitor (HRI). This results in phosphorylation of eIF2 and reduced eIF2 availability, which inhibits protein synthesis. Translation of specific transcripts such as Atf4, however, is enhanced. Upstream open reading frames (uORFs) are key to this regulation. The aim of this study is to investigate how tunicamycin treatment, that induces eIF2 phosphorylation, affects mRNA translation in erythroblasts. Ribosome profiling combined with RNA sequencing was used to determine translation initiation sites and ribosome density on individual transcripts. Treatment of erythroblasts with Tunicamycin (Tm) increased phosphorylation of eIF2 2-fold. At a false discovery rate of 1%, ribosome density was increased for 147 transcripts, among which transcriptional regulators such as Atf4, Tis7/Ifrd1, Pnrc2, Gtf2h, Mbd3, JunB and Kmt2e. Translation of 337 transcripts decreased more than average, among which Dym and Csde1. Ribosome profiling following Harringtonine treatment uncovered novel translation initiation sites and uORFs. Surprisingly, translated uORFs did not predict the sensitivity of transcripts to altered ribosome recruitment in presence or absence of Tm. The regulation of transcription and translation factors in reponse to eIF2 phosphorylation may explain the large overall response to iron deficiency in erythroblasts.
url http://europepmc.org/articles/PMC5892948?pdf=render
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