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KSRP Modulation of GAP-43 mRNA Stability Restricts Axonal Outgrowth in Embryonic Hippocampal Neurons

The KH-type splicing regulatory protein (KSRP) promotes the decay of AU-rich element (ARE)-containing mRNAs. Although KSRP is expressed in the nervous system, very little is known about its role in neurons. In this study, we examined whether KSRP regulates the stability of the ARE-containing GAP-43...

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Autores principales: Bird, Clark W., Gardiner, Amy S., Bolognani, Federico, Tanner, Daniel C., Chen, Ching-Yi, Lin, Wei-Jye, Yoo, Soonmoon, Twiss, Jeffery L., Perrone- Bizzozero, Nora
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3828348/
https://www.ncbi.nlm.nih.gov/pubmed/24244461
http://dx.doi.org/10.1371/journal.pone.0079255
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author Bird, Clark W.
Gardiner, Amy S.
Bolognani, Federico
Tanner, Daniel C.
Chen, Ching-Yi
Lin, Wei-Jye
Yoo, Soonmoon
Twiss, Jeffery L.
Perrone- Bizzozero, Nora
author_facet Bird, Clark W.
Gardiner, Amy S.
Bolognani, Federico
Tanner, Daniel C.
Chen, Ching-Yi
Lin, Wei-Jye
Yoo, Soonmoon
Twiss, Jeffery L.
Perrone- Bizzozero, Nora
author_sort Bird, Clark W.
collection PubMed
description The KH-type splicing regulatory protein (KSRP) promotes the decay of AU-rich element (ARE)-containing mRNAs. Although KSRP is expressed in the nervous system, very little is known about its role in neurons. In this study, we examined whether KSRP regulates the stability of the ARE-containing GAP-43 mRNA. We found that KSRP destabilizes this mRNA by binding to its ARE, a process that requires the presence of its fourth KH domain (KH4). Furthermore, KSRP competed with the stabilizing factor HuD for binding to these sequences. We also examined the functional consequences of KSRP overexpression and knockdown on the differentiation of primary hippocampal neurons in culture. Overexpression of full length KSRP or KSRP without its nuclear localization signal hindered axonal outgrowth in these cultures, while overexpression of a mutant protein without the KH4 domain that has less affinity for binding to GAP-43′s ARE had no effect. In contrast, depletion of KSRP led to a rise in GAP-43 mRNA levels and a dramatic increase in axonal length, both in KSRP shRNA transfected cells and neurons cultured from Ksrp(+/−) and Ksrp (−/−)embryos. Finally we found that overexpression of GAP-43 rescued the axonal outgrowth deficits seen with KSRP overexpression, but only when cells were transfected with GAP-43 constructs containing 3′ UTR sequences targeting the transport of this mRNA to axons. Together, our results suggest that KSRP is an important regulator of mRNA stability and axonal length that works in direct opposition to HuD to regulate the levels of GAP-43 and other ARE-containing neuronal mRNAs.
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spelling pubmed-38283482013-11-16 KSRP Modulation of GAP-43 mRNA Stability Restricts Axonal Outgrowth in Embryonic Hippocampal Neurons Bird, Clark W. Gardiner, Amy S. Bolognani, Federico Tanner, Daniel C. Chen, Ching-Yi Lin, Wei-Jye Yoo, Soonmoon Twiss, Jeffery L. Perrone- Bizzozero, Nora PLoS One Research Article The KH-type splicing regulatory protein (KSRP) promotes the decay of AU-rich element (ARE)-containing mRNAs. Although KSRP is expressed in the nervous system, very little is known about its role in neurons. In this study, we examined whether KSRP regulates the stability of the ARE-containing GAP-43 mRNA. We found that KSRP destabilizes this mRNA by binding to its ARE, a process that requires the presence of its fourth KH domain (KH4). Furthermore, KSRP competed with the stabilizing factor HuD for binding to these sequences. We also examined the functional consequences of KSRP overexpression and knockdown on the differentiation of primary hippocampal neurons in culture. Overexpression of full length KSRP or KSRP without its nuclear localization signal hindered axonal outgrowth in these cultures, while overexpression of a mutant protein without the KH4 domain that has less affinity for binding to GAP-43′s ARE had no effect. In contrast, depletion of KSRP led to a rise in GAP-43 mRNA levels and a dramatic increase in axonal length, both in KSRP shRNA transfected cells and neurons cultured from Ksrp(+/−) and Ksrp (−/−)embryos. Finally we found that overexpression of GAP-43 rescued the axonal outgrowth deficits seen with KSRP overexpression, but only when cells were transfected with GAP-43 constructs containing 3′ UTR sequences targeting the transport of this mRNA to axons. Together, our results suggest that KSRP is an important regulator of mRNA stability and axonal length that works in direct opposition to HuD to regulate the levels of GAP-43 and other ARE-containing neuronal mRNAs. Public Library of Science 2013-11-14 /pmc/articles/PMC3828348/ /pubmed/24244461 http://dx.doi.org/10.1371/journal.pone.0079255 Text en © 2013 Bird 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
Bird, Clark W.
Gardiner, Amy S.
Bolognani, Federico
Tanner, Daniel C.
Chen, Ching-Yi
Lin, Wei-Jye
Yoo, Soonmoon
Twiss, Jeffery L.
Perrone- Bizzozero, Nora
KSRP Modulation of GAP-43 mRNA Stability Restricts Axonal Outgrowth in Embryonic Hippocampal Neurons
title KSRP Modulation of GAP-43 mRNA Stability Restricts Axonal Outgrowth in Embryonic Hippocampal Neurons
title_full KSRP Modulation of GAP-43 mRNA Stability Restricts Axonal Outgrowth in Embryonic Hippocampal Neurons
title_fullStr KSRP Modulation of GAP-43 mRNA Stability Restricts Axonal Outgrowth in Embryonic Hippocampal Neurons
title_full_unstemmed KSRP Modulation of GAP-43 mRNA Stability Restricts Axonal Outgrowth in Embryonic Hippocampal Neurons
title_short KSRP Modulation of GAP-43 mRNA Stability Restricts Axonal Outgrowth in Embryonic Hippocampal Neurons
title_sort ksrp modulation of gap-43 mrna stability restricts axonal outgrowth in embryonic hippocampal neurons
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3828348/
https://www.ncbi.nlm.nih.gov/pubmed/24244461
http://dx.doi.org/10.1371/journal.pone.0079255
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