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A translational silencing function of MCPIP1/Regnase-1 specified by the target site context

The expression of proteins during inflammatory and immune reactions is coordinated by post-transcriptional mechanisms. A particularly strong suppression of protein expression is exerted by a conserved translational silencing element (TSE) identified in the 3′ UTR of NFKBIZ mRNA, which is among the t...

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Autores principales: Behrens, Gesine, Winzen, Reinhard, Rehage, Nina, Dörrie, Anneke, Barsch, Monika, Hoffmann, Anne, Hackermüller, Jörg, Tiedje, Christopher, Heissmeyer, Vigo, Holtmann, Helmut
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5934641/
https://www.ncbi.nlm.nih.gov/pubmed/29471506
http://dx.doi.org/10.1093/nar/gky106
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author Behrens, Gesine
Winzen, Reinhard
Rehage, Nina
Dörrie, Anneke
Barsch, Monika
Hoffmann, Anne
Hackermüller, Jörg
Tiedje, Christopher
Heissmeyer, Vigo
Holtmann, Helmut
author_facet Behrens, Gesine
Winzen, Reinhard
Rehage, Nina
Dörrie, Anneke
Barsch, Monika
Hoffmann, Anne
Hackermüller, Jörg
Tiedje, Christopher
Heissmeyer, Vigo
Holtmann, Helmut
author_sort Behrens, Gesine
collection PubMed
description The expression of proteins during inflammatory and immune reactions is coordinated by post-transcriptional mechanisms. A particularly strong suppression of protein expression is exerted by a conserved translational silencing element (TSE) identified in the 3′ UTR of NFKBIZ mRNA, which is among the targets of the RNA-binding proteins Roquin-1/2 and MCPIP1/Regnase-1. We present evidence that in the context of the TSE MCPIP1, so far known for its endonuclease activity toward mRNAs specified by distinct stem–loop (SL) structures, also suppresses translation. Overexpression of MCPIP1 silenced translation in a TSE-dependent manner and reduced ribosome occupancy of the mRNA. Correspondingly, MCPIP1 depletion alleviated silencing and increased polysomal association of the mRNA. Translationally silenced NFKBIZ or reporter mRNAs were mostly capped, polyadenylated and ribosome associated. Furthermore, MCPIP1 silenced also cap-independent, CrPV-IRES-dependent translation. This suggests that MCPIP1 suppresses a post-initiation step. The TSE is predicted to form five SL structures. SL4 and 5 resemble target structures reported for MCPIP1 and together were sufficient for MCPIP1 binding and mRNA destabilization. Translational silencing, however, required SL1–3 in addition. Thus the NFKBIZ TSE functions as an RNA element in which sequences adjacent to the site of interaction with MCPIP1 and dispensable for accelerated mRNA degradation extend the functional repertoire of MCPIP1 to translational silencing.
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spelling pubmed-59346412018-05-09 A translational silencing function of MCPIP1/Regnase-1 specified by the target site context Behrens, Gesine Winzen, Reinhard Rehage, Nina Dörrie, Anneke Barsch, Monika Hoffmann, Anne Hackermüller, Jörg Tiedje, Christopher Heissmeyer, Vigo Holtmann, Helmut Nucleic Acids Res RNA and RNA-protein complexes The expression of proteins during inflammatory and immune reactions is coordinated by post-transcriptional mechanisms. A particularly strong suppression of protein expression is exerted by a conserved translational silencing element (TSE) identified in the 3′ UTR of NFKBIZ mRNA, which is among the targets of the RNA-binding proteins Roquin-1/2 and MCPIP1/Regnase-1. We present evidence that in the context of the TSE MCPIP1, so far known for its endonuclease activity toward mRNAs specified by distinct stem–loop (SL) structures, also suppresses translation. Overexpression of MCPIP1 silenced translation in a TSE-dependent manner and reduced ribosome occupancy of the mRNA. Correspondingly, MCPIP1 depletion alleviated silencing and increased polysomal association of the mRNA. Translationally silenced NFKBIZ or reporter mRNAs were mostly capped, polyadenylated and ribosome associated. Furthermore, MCPIP1 silenced also cap-independent, CrPV-IRES-dependent translation. This suggests that MCPIP1 suppresses a post-initiation step. The TSE is predicted to form five SL structures. SL4 and 5 resemble target structures reported for MCPIP1 and together were sufficient for MCPIP1 binding and mRNA destabilization. Translational silencing, however, required SL1–3 in addition. Thus the NFKBIZ TSE functions as an RNA element in which sequences adjacent to the site of interaction with MCPIP1 and dispensable for accelerated mRNA degradation extend the functional repertoire of MCPIP1 to translational silencing. Oxford University Press 2018-05-04 2018-02-19 /pmc/articles/PMC5934641/ /pubmed/29471506 http://dx.doi.org/10.1093/nar/gky106 Text en © The Author(s) 2018. Published by Oxford University Press on behalf of Nucleic Acids Research. http://creativecommons.org/licenses/by-nc/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle RNA and RNA-protein complexes
Behrens, Gesine
Winzen, Reinhard
Rehage, Nina
Dörrie, Anneke
Barsch, Monika
Hoffmann, Anne
Hackermüller, Jörg
Tiedje, Christopher
Heissmeyer, Vigo
Holtmann, Helmut
A translational silencing function of MCPIP1/Regnase-1 specified by the target site context
title A translational silencing function of MCPIP1/Regnase-1 specified by the target site context
title_full A translational silencing function of MCPIP1/Regnase-1 specified by the target site context
title_fullStr A translational silencing function of MCPIP1/Regnase-1 specified by the target site context
title_full_unstemmed A translational silencing function of MCPIP1/Regnase-1 specified by the target site context
title_short A translational silencing function of MCPIP1/Regnase-1 specified by the target site context
title_sort translational silencing function of mcpip1/regnase-1 specified by the target site context
topic RNA and RNA-protein complexes
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5934641/
https://www.ncbi.nlm.nih.gov/pubmed/29471506
http://dx.doi.org/10.1093/nar/gky106
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