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RNA-seq of the aging brain in the short-lived fish N. furzeri – conserved pathways and novel genes associated with neurogenesis

The brains of teleost fish show extensive adult neurogenesis and neuronal regeneration. The patterns of gene regulation during fish brain aging are unknown. The short-lived teleost fish Nothobranchius furzeri shows markers of brain aging including reduced learning performances, gliosis, and reduced...

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Autores principales: Baumgart, Mario, Groth, Marco, Priebe, Steffen, Savino, Aurora, Testa, Giovanna, Dix, Andreas, Ripa, Roberto, Spallotta, Francesco, Gaetano, Carlo, Ori, Michela, Terzibasi Tozzini, Eva, Guthke, Reinhard, Platzer, Matthias, Cellerino, Alessandro
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BlackWell Publishing Ltd 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4326923/
https://www.ncbi.nlm.nih.gov/pubmed/25059688
http://dx.doi.org/10.1111/acel.12257
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author Baumgart, Mario
Groth, Marco
Priebe, Steffen
Savino, Aurora
Testa, Giovanna
Dix, Andreas
Ripa, Roberto
Spallotta, Francesco
Gaetano, Carlo
Ori, Michela
Terzibasi Tozzini, Eva
Guthke, Reinhard
Platzer, Matthias
Cellerino, Alessandro
author_facet Baumgart, Mario
Groth, Marco
Priebe, Steffen
Savino, Aurora
Testa, Giovanna
Dix, Andreas
Ripa, Roberto
Spallotta, Francesco
Gaetano, Carlo
Ori, Michela
Terzibasi Tozzini, Eva
Guthke, Reinhard
Platzer, Matthias
Cellerino, Alessandro
author_sort Baumgart, Mario
collection PubMed
description The brains of teleost fish show extensive adult neurogenesis and neuronal regeneration. The patterns of gene regulation during fish brain aging are unknown. The short-lived teleost fish Nothobranchius furzeri shows markers of brain aging including reduced learning performances, gliosis, and reduced adult neurogenesis. We used RNA-seq to quantify genome-wide transcript regulation and sampled five different time points to characterize whole-genome transcript regulation during brain aging of N. furzeri. Comparison with human datasets revealed conserved up-regulation of ribosome, lysosome, and complement activation and conserved down-regulation of synapse, mitochondrion, proteasome, and spliceosome. Down-regulated genes differ in their temporal profiles: neurogenesis and extracellular matrix genes showed rapid decay, synaptic and axonal genes a progressive decay. A substantial proportion of differentially expressed genes (∼40%) showed inversion of their temporal profiles in the last time point: spliceosome and proteasome showed initial down-regulation and stress-response genes initial up-regulation. Extensive regulation was detected for chromatin remodelers of the DNMT and CBX families as well as members of the polycomb complex and was mirrored by an up-regulation of the H3K27me3 epigenetic mark. Network analysis showed extensive coregulation of cell cycle/DNA synthesis genes with the uncharacterized zinc-finger protein ZNF367 as central hub. In situ hybridization showed that ZNF367 is expressed in neuronal stem cell niches of both embryonic zebrafish and adult N. furzeri. Other genes down-regulated with age, not previously associated with adult neurogenesis and with similar patterns of expression are AGR2, DNMT3A, KRCP, MEX3A, SCML4, and CBX1. CBX7, on the other hand, was up-regulated with age.
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spelling pubmed-43269232015-02-19 RNA-seq of the aging brain in the short-lived fish N. furzeri – conserved pathways and novel genes associated with neurogenesis Baumgart, Mario Groth, Marco Priebe, Steffen Savino, Aurora Testa, Giovanna Dix, Andreas Ripa, Roberto Spallotta, Francesco Gaetano, Carlo Ori, Michela Terzibasi Tozzini, Eva Guthke, Reinhard Platzer, Matthias Cellerino, Alessandro Aging Cell Original Articles The brains of teleost fish show extensive adult neurogenesis and neuronal regeneration. The patterns of gene regulation during fish brain aging are unknown. The short-lived teleost fish Nothobranchius furzeri shows markers of brain aging including reduced learning performances, gliosis, and reduced adult neurogenesis. We used RNA-seq to quantify genome-wide transcript regulation and sampled five different time points to characterize whole-genome transcript regulation during brain aging of N. furzeri. Comparison with human datasets revealed conserved up-regulation of ribosome, lysosome, and complement activation and conserved down-regulation of synapse, mitochondrion, proteasome, and spliceosome. Down-regulated genes differ in their temporal profiles: neurogenesis and extracellular matrix genes showed rapid decay, synaptic and axonal genes a progressive decay. A substantial proportion of differentially expressed genes (∼40%) showed inversion of their temporal profiles in the last time point: spliceosome and proteasome showed initial down-regulation and stress-response genes initial up-regulation. Extensive regulation was detected for chromatin remodelers of the DNMT and CBX families as well as members of the polycomb complex and was mirrored by an up-regulation of the H3K27me3 epigenetic mark. Network analysis showed extensive coregulation of cell cycle/DNA synthesis genes with the uncharacterized zinc-finger protein ZNF367 as central hub. In situ hybridization showed that ZNF367 is expressed in neuronal stem cell niches of both embryonic zebrafish and adult N. furzeri. Other genes down-regulated with age, not previously associated with adult neurogenesis and with similar patterns of expression are AGR2, DNMT3A, KRCP, MEX3A, SCML4, and CBX1. CBX7, on the other hand, was up-regulated with age. BlackWell Publishing Ltd 2014-12 2014-07-25 /pmc/articles/PMC4326923/ /pubmed/25059688 http://dx.doi.org/10.1111/acel.12257 Text en © 2014 The Authors. Aging cell published by the Anatomical Society and John Wiley & Sons Ltd. http://creativecommons.org/licenses/by/3.0/ This is an open access article under the terms of the Creative Commons Attribution License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Baumgart, Mario
Groth, Marco
Priebe, Steffen
Savino, Aurora
Testa, Giovanna
Dix, Andreas
Ripa, Roberto
Spallotta, Francesco
Gaetano, Carlo
Ori, Michela
Terzibasi Tozzini, Eva
Guthke, Reinhard
Platzer, Matthias
Cellerino, Alessandro
RNA-seq of the aging brain in the short-lived fish N. furzeri – conserved pathways and novel genes associated with neurogenesis
title RNA-seq of the aging brain in the short-lived fish N. furzeri – conserved pathways and novel genes associated with neurogenesis
title_full RNA-seq of the aging brain in the short-lived fish N. furzeri – conserved pathways and novel genes associated with neurogenesis
title_fullStr RNA-seq of the aging brain in the short-lived fish N. furzeri – conserved pathways and novel genes associated with neurogenesis
title_full_unstemmed RNA-seq of the aging brain in the short-lived fish N. furzeri – conserved pathways and novel genes associated with neurogenesis
title_short RNA-seq of the aging brain in the short-lived fish N. furzeri – conserved pathways and novel genes associated with neurogenesis
title_sort rna-seq of the aging brain in the short-lived fish n. furzeri – conserved pathways and novel genes associated with neurogenesis
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4326923/
https://www.ncbi.nlm.nih.gov/pubmed/25059688
http://dx.doi.org/10.1111/acel.12257
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