Cargando…

Tristetraprolin binding site atlas in the macrophage transcriptome reveals a switch for inflammation resolution

Precise regulation of mRNA decay is fundamental for robust yet not exaggerated inflammatory responses to pathogens. However, a global model integrating regulation and functional consequences of inflammation‐associated mRNA decay remains to be established. Using time‐resolved high‐resolution RNA bind...

Descripción completa

Detalles Bibliográficos
Autores principales: Sedlyarov, Vitaly, Fallmann, Jörg, Ebner, Florian, Huemer, Jakob, Sneezum, Lucy, Ivin, Masa, Kreiner, Kristina, Tanzer, Andrea, Vogl, Claus, Hofacker, Ivo, Kovarik, Pavel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4988506/
https://www.ncbi.nlm.nih.gov/pubmed/27178967
http://dx.doi.org/10.15252/msb.20156628
_version_ 1782448441259982848
author Sedlyarov, Vitaly
Fallmann, Jörg
Ebner, Florian
Huemer, Jakob
Sneezum, Lucy
Ivin, Masa
Kreiner, Kristina
Tanzer, Andrea
Vogl, Claus
Hofacker, Ivo
Kovarik, Pavel
author_facet Sedlyarov, Vitaly
Fallmann, Jörg
Ebner, Florian
Huemer, Jakob
Sneezum, Lucy
Ivin, Masa
Kreiner, Kristina
Tanzer, Andrea
Vogl, Claus
Hofacker, Ivo
Kovarik, Pavel
author_sort Sedlyarov, Vitaly
collection PubMed
description Precise regulation of mRNA decay is fundamental for robust yet not exaggerated inflammatory responses to pathogens. However, a global model integrating regulation and functional consequences of inflammation‐associated mRNA decay remains to be established. Using time‐resolved high‐resolution RNA binding analysis of the mRNA‐destabilizing protein tristetraprolin (TTP), an inflammation‐limiting factor, we qualitatively and quantitatively characterize TTP binding positions in the transcriptome of immunostimulated macrophages. We identify pervasive destabilizing and non‐destabilizing TTP binding, including a robust intronic binding, showing that TTP binding is not sufficient for mRNA destabilization. A low degree of flanking RNA structuredness distinguishes occupied from silent binding motifs. By functionally relating TTP binding sites to mRNA stability and levels, we identify a TTP‐controlled switch for the transition from inflammatory into the resolution phase of the macrophage immune response. Mapping of binding positions of the mRNA‐stabilizing protein HuR reveals little target and functional overlap with TTP, implying a limited co‐regulation of inflammatory mRNA decay by these proteins. Our study establishes a functionally annotated and navigable transcriptome‐wide atlas (http://ttp-atlas.univie.ac.at) of cis‐acting elements controlling mRNA decay in inflammation.
format Online
Article
Text
id pubmed-4988506
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-49885062016-08-30 Tristetraprolin binding site atlas in the macrophage transcriptome reveals a switch for inflammation resolution Sedlyarov, Vitaly Fallmann, Jörg Ebner, Florian Huemer, Jakob Sneezum, Lucy Ivin, Masa Kreiner, Kristina Tanzer, Andrea Vogl, Claus Hofacker, Ivo Kovarik, Pavel Mol Syst Biol Articles Precise regulation of mRNA decay is fundamental for robust yet not exaggerated inflammatory responses to pathogens. However, a global model integrating regulation and functional consequences of inflammation‐associated mRNA decay remains to be established. Using time‐resolved high‐resolution RNA binding analysis of the mRNA‐destabilizing protein tristetraprolin (TTP), an inflammation‐limiting factor, we qualitatively and quantitatively characterize TTP binding positions in the transcriptome of immunostimulated macrophages. We identify pervasive destabilizing and non‐destabilizing TTP binding, including a robust intronic binding, showing that TTP binding is not sufficient for mRNA destabilization. A low degree of flanking RNA structuredness distinguishes occupied from silent binding motifs. By functionally relating TTP binding sites to mRNA stability and levels, we identify a TTP‐controlled switch for the transition from inflammatory into the resolution phase of the macrophage immune response. Mapping of binding positions of the mRNA‐stabilizing protein HuR reveals little target and functional overlap with TTP, implying a limited co‐regulation of inflammatory mRNA decay by these proteins. Our study establishes a functionally annotated and navigable transcriptome‐wide atlas (http://ttp-atlas.univie.ac.at) of cis‐acting elements controlling mRNA decay in inflammation. John Wiley and Sons Inc. 2016-05-13 /pmc/articles/PMC4988506/ /pubmed/27178967 http://dx.doi.org/10.15252/msb.20156628 Text en © 2016 The Authors. Published under the terms of the CC BY 4.0 license This is an open access article under the terms of the Creative Commons Attribution 4.0 (http://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Articles
Sedlyarov, Vitaly
Fallmann, Jörg
Ebner, Florian
Huemer, Jakob
Sneezum, Lucy
Ivin, Masa
Kreiner, Kristina
Tanzer, Andrea
Vogl, Claus
Hofacker, Ivo
Kovarik, Pavel
Tristetraprolin binding site atlas in the macrophage transcriptome reveals a switch for inflammation resolution
title Tristetraprolin binding site atlas in the macrophage transcriptome reveals a switch for inflammation resolution
title_full Tristetraprolin binding site atlas in the macrophage transcriptome reveals a switch for inflammation resolution
title_fullStr Tristetraprolin binding site atlas in the macrophage transcriptome reveals a switch for inflammation resolution
title_full_unstemmed Tristetraprolin binding site atlas in the macrophage transcriptome reveals a switch for inflammation resolution
title_short Tristetraprolin binding site atlas in the macrophage transcriptome reveals a switch for inflammation resolution
title_sort tristetraprolin binding site atlas in the macrophage transcriptome reveals a switch for inflammation resolution
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4988506/
https://www.ncbi.nlm.nih.gov/pubmed/27178967
http://dx.doi.org/10.15252/msb.20156628
work_keys_str_mv AT sedlyarovvitaly tristetraprolinbindingsiteatlasinthemacrophagetranscriptomerevealsaswitchforinflammationresolution
AT fallmannjorg tristetraprolinbindingsiteatlasinthemacrophagetranscriptomerevealsaswitchforinflammationresolution
AT ebnerflorian tristetraprolinbindingsiteatlasinthemacrophagetranscriptomerevealsaswitchforinflammationresolution
AT huemerjakob tristetraprolinbindingsiteatlasinthemacrophagetranscriptomerevealsaswitchforinflammationresolution
AT sneezumlucy tristetraprolinbindingsiteatlasinthemacrophagetranscriptomerevealsaswitchforinflammationresolution
AT ivinmasa tristetraprolinbindingsiteatlasinthemacrophagetranscriptomerevealsaswitchforinflammationresolution
AT kreinerkristina tristetraprolinbindingsiteatlasinthemacrophagetranscriptomerevealsaswitchforinflammationresolution
AT tanzerandrea tristetraprolinbindingsiteatlasinthemacrophagetranscriptomerevealsaswitchforinflammationresolution
AT voglclaus tristetraprolinbindingsiteatlasinthemacrophagetranscriptomerevealsaswitchforinflammationresolution
AT hofackerivo tristetraprolinbindingsiteatlasinthemacrophagetranscriptomerevealsaswitchforinflammationresolution
AT kovarikpavel tristetraprolinbindingsiteatlasinthemacrophagetranscriptomerevealsaswitchforinflammationresolution