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Gadd45α modulates aversive learning through post‐transcriptional regulation of memory‐related mRNAs

Learning is essential for survival and is controlled by complex molecular mechanisms including regulation of newly synthesized mRNAs that are required to modify synaptic functions. Despite the well‐known role of RNA‐binding proteins (RBPs) in mRNA functionality, their detailed regulation during memo...

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Autores principales: Aparisi Rey, Alejandro, Karaulanov, Emil, Sharopov, Salim, Arab, Khelifa, Schäfer, Andrea, Gierl, Mathias, Guggenhuber, Stephan, Brandes, Caroline, Pennella, Luigi, Gruhn, Wolfram H, Jelinek, Ruth, Maul, Christina, Conrad, Andrea, Kilb, Werner, Luhmann, Heiko J, Niehrs, Christof, Lutz, Beat
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6549022/
https://www.ncbi.nlm.nih.gov/pubmed/30948457
http://dx.doi.org/10.15252/embr.201846022
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author Aparisi Rey, Alejandro
Karaulanov, Emil
Sharopov, Salim
Arab, Khelifa
Schäfer, Andrea
Gierl, Mathias
Guggenhuber, Stephan
Brandes, Caroline
Pennella, Luigi
Gruhn, Wolfram H
Jelinek, Ruth
Maul, Christina
Conrad, Andrea
Kilb, Werner
Luhmann, Heiko J
Niehrs, Christof
Lutz, Beat
author_facet Aparisi Rey, Alejandro
Karaulanov, Emil
Sharopov, Salim
Arab, Khelifa
Schäfer, Andrea
Gierl, Mathias
Guggenhuber, Stephan
Brandes, Caroline
Pennella, Luigi
Gruhn, Wolfram H
Jelinek, Ruth
Maul, Christina
Conrad, Andrea
Kilb, Werner
Luhmann, Heiko J
Niehrs, Christof
Lutz, Beat
author_sort Aparisi Rey, Alejandro
collection PubMed
description Learning is essential for survival and is controlled by complex molecular mechanisms including regulation of newly synthesized mRNAs that are required to modify synaptic functions. Despite the well‐known role of RNA‐binding proteins (RBPs) in mRNA functionality, their detailed regulation during memory consolidation is poorly understood. This study focuses on the brain function of the RBP Gadd45α (growth arrest and DNA damage‐inducible protein 45 alpha, encoded by the Gadd45a gene). Here, we find that hippocampal memory and long‐term potentiation are strongly impaired in Gadd45a‐deficient mice, a phenotype accompanied by reduced levels of memory‐related mRNAs. The majority of the Gadd45α‐regulated transcripts show unusually long 3′ untranslated regions (3′UTRs) that are destabilized in Gadd45a‐deficient mice via a transcription‐independent mechanism, leading to reduced levels of the corresponding proteins in synaptosomes. Moreover, Gadd45α can bind specifically to these memory‐related mRNAs. Our study reveals a new function for extended 3′UTRs in memory consolidation and identifies Gadd45α as a novel regulator of mRNA stability.
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spelling pubmed-65490222019-06-07 Gadd45α modulates aversive learning through post‐transcriptional regulation of memory‐related mRNAs Aparisi Rey, Alejandro Karaulanov, Emil Sharopov, Salim Arab, Khelifa Schäfer, Andrea Gierl, Mathias Guggenhuber, Stephan Brandes, Caroline Pennella, Luigi Gruhn, Wolfram H Jelinek, Ruth Maul, Christina Conrad, Andrea Kilb, Werner Luhmann, Heiko J Niehrs, Christof Lutz, Beat EMBO Rep Articles Learning is essential for survival and is controlled by complex molecular mechanisms including regulation of newly synthesized mRNAs that are required to modify synaptic functions. Despite the well‐known role of RNA‐binding proteins (RBPs) in mRNA functionality, their detailed regulation during memory consolidation is poorly understood. This study focuses on the brain function of the RBP Gadd45α (growth arrest and DNA damage‐inducible protein 45 alpha, encoded by the Gadd45a gene). Here, we find that hippocampal memory and long‐term potentiation are strongly impaired in Gadd45a‐deficient mice, a phenotype accompanied by reduced levels of memory‐related mRNAs. The majority of the Gadd45α‐regulated transcripts show unusually long 3′ untranslated regions (3′UTRs) that are destabilized in Gadd45a‐deficient mice via a transcription‐independent mechanism, leading to reduced levels of the corresponding proteins in synaptosomes. Moreover, Gadd45α can bind specifically to these memory‐related mRNAs. Our study reveals a new function for extended 3′UTRs in memory consolidation and identifies Gadd45α as a novel regulator of mRNA stability. John Wiley and Sons Inc. 2019-04-04 2019-06 /pmc/articles/PMC6549022/ /pubmed/30948457 http://dx.doi.org/10.15252/embr.201846022 Text en © 2019 The Authors. Published under the terms of the CC BY 4.0 license This is an open access article under the terms of the 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
Aparisi Rey, Alejandro
Karaulanov, Emil
Sharopov, Salim
Arab, Khelifa
Schäfer, Andrea
Gierl, Mathias
Guggenhuber, Stephan
Brandes, Caroline
Pennella, Luigi
Gruhn, Wolfram H
Jelinek, Ruth
Maul, Christina
Conrad, Andrea
Kilb, Werner
Luhmann, Heiko J
Niehrs, Christof
Lutz, Beat
Gadd45α modulates aversive learning through post‐transcriptional regulation of memory‐related mRNAs
title Gadd45α modulates aversive learning through post‐transcriptional regulation of memory‐related mRNAs
title_full Gadd45α modulates aversive learning through post‐transcriptional regulation of memory‐related mRNAs
title_fullStr Gadd45α modulates aversive learning through post‐transcriptional regulation of memory‐related mRNAs
title_full_unstemmed Gadd45α modulates aversive learning through post‐transcriptional regulation of memory‐related mRNAs
title_short Gadd45α modulates aversive learning through post‐transcriptional regulation of memory‐related mRNAs
title_sort gadd45α modulates aversive learning through post‐transcriptional regulation of memory‐related mrnas
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6549022/
https://www.ncbi.nlm.nih.gov/pubmed/30948457
http://dx.doi.org/10.15252/embr.201846022
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