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Regulation of Neuronal Differentiation by Proteins Associated with Nuclear Bodies

Nuclear bodies are large sub-nuclear structures composed of RNA and protein molecules. The Survival of Motor Neuron (SMN) protein localizes to Cajal bodies (CBs) and nuclear gems. Diminished cellular concentration of SMN is associated with the neurodegenerative disease Spinal Muscular Atrophy (SMA)....

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Autores principales: Förthmann, Benjamin, van Bergeijk, Jeroen, Lee, Yu-Wei, Lübben, Verena, Schill, Yvonne, Brinkmann, Hella, Ratzka, Andreas, Stachowiak, Michal K., Hebert, Michael, Grothe, Claudia, Claus, Peter
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3866168/
https://www.ncbi.nlm.nih.gov/pubmed/24358231
http://dx.doi.org/10.1371/journal.pone.0082871
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author Förthmann, Benjamin
van Bergeijk, Jeroen
Lee, Yu-Wei
Lübben, Verena
Schill, Yvonne
Brinkmann, Hella
Ratzka, Andreas
Stachowiak, Michal K.
Hebert, Michael
Grothe, Claudia
Claus, Peter
author_facet Förthmann, Benjamin
van Bergeijk, Jeroen
Lee, Yu-Wei
Lübben, Verena
Schill, Yvonne
Brinkmann, Hella
Ratzka, Andreas
Stachowiak, Michal K.
Hebert, Michael
Grothe, Claudia
Claus, Peter
author_sort Förthmann, Benjamin
collection PubMed
description Nuclear bodies are large sub-nuclear structures composed of RNA and protein molecules. The Survival of Motor Neuron (SMN) protein localizes to Cajal bodies (CBs) and nuclear gems. Diminished cellular concentration of SMN is associated with the neurodegenerative disease Spinal Muscular Atrophy (SMA). How nuclear body architecture and its structural components influence neuronal differentiation remains elusive. In this study, we analyzed the effects of SMN and two of its interaction partners in cellular models of neuronal differentiation. The nuclear 23 kDa isoform of Fibroblast Growth Factor – 2 (FGF-2(23)) is one of these interacting proteins – and was previously observed to influence nuclear bodies by destabilizing nuclear gems and mobilizing SMN from Cajal bodies (CBs). Here we demonstrate that FGF-2(23) blocks SMN-promoted neurite outgrowth, and also show that SMN disrupts FGF-2(23)-dependent transcription. Our results indicate that FGF-2(23) and SMN form an inactive complex that interferes with neuronal differentiation by mutually antagonizing nuclear functions. Coilin is another nuclear SMN binding partner and a marker protein for Cajal bodies (CBs). In addition, coilin is essential for CB function in maturation of small nuclear ribonucleoprotein particles (snRNPs). The role of coilin outside of Cajal bodies and its putative impacts in tissue differentiation are poorly defined. The present study shows that protein levels of nucleoplasmic coilin outside of CBs decrease during neuronal differentiation. Overexpression of coilin has an inhibitory effect on neurite outgrowth. Furthermore, we find that nucleoplasmic coilin inhibits neurite outgrowth independent of SMN binding revealing a new function for coilin in neuronal differentiation.
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spelling pubmed-38661682013-12-19 Regulation of Neuronal Differentiation by Proteins Associated with Nuclear Bodies Förthmann, Benjamin van Bergeijk, Jeroen Lee, Yu-Wei Lübben, Verena Schill, Yvonne Brinkmann, Hella Ratzka, Andreas Stachowiak, Michal K. Hebert, Michael Grothe, Claudia Claus, Peter PLoS One Research Article Nuclear bodies are large sub-nuclear structures composed of RNA and protein molecules. The Survival of Motor Neuron (SMN) protein localizes to Cajal bodies (CBs) and nuclear gems. Diminished cellular concentration of SMN is associated with the neurodegenerative disease Spinal Muscular Atrophy (SMA). How nuclear body architecture and its structural components influence neuronal differentiation remains elusive. In this study, we analyzed the effects of SMN and two of its interaction partners in cellular models of neuronal differentiation. The nuclear 23 kDa isoform of Fibroblast Growth Factor – 2 (FGF-2(23)) is one of these interacting proteins – and was previously observed to influence nuclear bodies by destabilizing nuclear gems and mobilizing SMN from Cajal bodies (CBs). Here we demonstrate that FGF-2(23) blocks SMN-promoted neurite outgrowth, and also show that SMN disrupts FGF-2(23)-dependent transcription. Our results indicate that FGF-2(23) and SMN form an inactive complex that interferes with neuronal differentiation by mutually antagonizing nuclear functions. Coilin is another nuclear SMN binding partner and a marker protein for Cajal bodies (CBs). In addition, coilin is essential for CB function in maturation of small nuclear ribonucleoprotein particles (snRNPs). The role of coilin outside of Cajal bodies and its putative impacts in tissue differentiation are poorly defined. The present study shows that protein levels of nucleoplasmic coilin outside of CBs decrease during neuronal differentiation. Overexpression of coilin has an inhibitory effect on neurite outgrowth. Furthermore, we find that nucleoplasmic coilin inhibits neurite outgrowth independent of SMN binding revealing a new function for coilin in neuronal differentiation. Public Library of Science 2013-12-17 /pmc/articles/PMC3866168/ /pubmed/24358231 http://dx.doi.org/10.1371/journal.pone.0082871 Text en © 2013 Förthmann et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Förthmann, Benjamin
van Bergeijk, Jeroen
Lee, Yu-Wei
Lübben, Verena
Schill, Yvonne
Brinkmann, Hella
Ratzka, Andreas
Stachowiak, Michal K.
Hebert, Michael
Grothe, Claudia
Claus, Peter
Regulation of Neuronal Differentiation by Proteins Associated with Nuclear Bodies
title Regulation of Neuronal Differentiation by Proteins Associated with Nuclear Bodies
title_full Regulation of Neuronal Differentiation by Proteins Associated with Nuclear Bodies
title_fullStr Regulation of Neuronal Differentiation by Proteins Associated with Nuclear Bodies
title_full_unstemmed Regulation of Neuronal Differentiation by Proteins Associated with Nuclear Bodies
title_short Regulation of Neuronal Differentiation by Proteins Associated with Nuclear Bodies
title_sort regulation of neuronal differentiation by proteins associated with nuclear bodies
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3866168/
https://www.ncbi.nlm.nih.gov/pubmed/24358231
http://dx.doi.org/10.1371/journal.pone.0082871
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