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Slit2 Inactivates GSK3β to Signal Neurite Outgrowth Inhibition

Slit molecules comprise one of the four canonical families of axon guidance cues that steer the growth cone in the developing nervous system. Apart from their role in axon pathfinding, emerging lines of evidence suggest that a wide range of cellular processes are regulated by Slit, ranging from bran...

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Autores principales: Byun, Justin, Kim, Bo Taek, Kim, Yun Tai, Jiao, Zhongxian, Hur, Eun-Mi, Zhou, Feng-Quan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3526488/
https://www.ncbi.nlm.nih.gov/pubmed/23284807
http://dx.doi.org/10.1371/journal.pone.0051895
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author Byun, Justin
Kim, Bo Taek
Kim, Yun Tai
Jiao, Zhongxian
Hur, Eun-Mi
Zhou, Feng-Quan
author_facet Byun, Justin
Kim, Bo Taek
Kim, Yun Tai
Jiao, Zhongxian
Hur, Eun-Mi
Zhou, Feng-Quan
author_sort Byun, Justin
collection PubMed
description Slit molecules comprise one of the four canonical families of axon guidance cues that steer the growth cone in the developing nervous system. Apart from their role in axon pathfinding, emerging lines of evidence suggest that a wide range of cellular processes are regulated by Slit, ranging from branch formation and fasciculation during neurite outgrowth to tumor progression and to angiogenesis. However, the molecular and cellular mechanisms downstream of Slit remain largely unknown, in part, because of a lack of a readily manipulatable system that produces easily identifiable traits in response to Slit. The present study demonstrates the feasibility of using the cell line CAD as an assay system to dissect the signaling pathways triggered by Slit. Here, we show that CAD cells express receptors for Slit (Robo1 and Robo2) and that CAD cells respond to nanomolar concentrations of Slit2 by markedly decelerating the rate of process extension. Using this system, we reveal that Slit2 inactivates GSK3β and that inhibition of GSK3β is required for Slit2 to inhibit process outgrowth. Furthermore, we show that Slit2 induces GSK3β phosphorylation and inhibits neurite outgrowth in adult dorsal root ganglion neurons, validating Slit2 signaling in primary neurons. Given that CAD cells can be conveniently manipulated using standard molecular biological methods and that the process extension phenotype regulated by Slit2 can be readily traced and quantified, the use of a cell line CAD will facilitate the identification of downstream effectors and elucidation of signaling cascade triggered by Slit.
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spelling pubmed-35264882013-01-02 Slit2 Inactivates GSK3β to Signal Neurite Outgrowth Inhibition Byun, Justin Kim, Bo Taek Kim, Yun Tai Jiao, Zhongxian Hur, Eun-Mi Zhou, Feng-Quan PLoS One Research Article Slit molecules comprise one of the four canonical families of axon guidance cues that steer the growth cone in the developing nervous system. Apart from their role in axon pathfinding, emerging lines of evidence suggest that a wide range of cellular processes are regulated by Slit, ranging from branch formation and fasciculation during neurite outgrowth to tumor progression and to angiogenesis. However, the molecular and cellular mechanisms downstream of Slit remain largely unknown, in part, because of a lack of a readily manipulatable system that produces easily identifiable traits in response to Slit. The present study demonstrates the feasibility of using the cell line CAD as an assay system to dissect the signaling pathways triggered by Slit. Here, we show that CAD cells express receptors for Slit (Robo1 and Robo2) and that CAD cells respond to nanomolar concentrations of Slit2 by markedly decelerating the rate of process extension. Using this system, we reveal that Slit2 inactivates GSK3β and that inhibition of GSK3β is required for Slit2 to inhibit process outgrowth. Furthermore, we show that Slit2 induces GSK3β phosphorylation and inhibits neurite outgrowth in adult dorsal root ganglion neurons, validating Slit2 signaling in primary neurons. Given that CAD cells can be conveniently manipulated using standard molecular biological methods and that the process extension phenotype regulated by Slit2 can be readily traced and quantified, the use of a cell line CAD will facilitate the identification of downstream effectors and elucidation of signaling cascade triggered by Slit. Public Library of Science 2012-12-19 /pmc/articles/PMC3526488/ /pubmed/23284807 http://dx.doi.org/10.1371/journal.pone.0051895 Text en © 2012 Byun 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
Byun, Justin
Kim, Bo Taek
Kim, Yun Tai
Jiao, Zhongxian
Hur, Eun-Mi
Zhou, Feng-Quan
Slit2 Inactivates GSK3β to Signal Neurite Outgrowth Inhibition
title Slit2 Inactivates GSK3β to Signal Neurite Outgrowth Inhibition
title_full Slit2 Inactivates GSK3β to Signal Neurite Outgrowth Inhibition
title_fullStr Slit2 Inactivates GSK3β to Signal Neurite Outgrowth Inhibition
title_full_unstemmed Slit2 Inactivates GSK3β to Signal Neurite Outgrowth Inhibition
title_short Slit2 Inactivates GSK3β to Signal Neurite Outgrowth Inhibition
title_sort slit2 inactivates gsk3β to signal neurite outgrowth inhibition
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3526488/
https://www.ncbi.nlm.nih.gov/pubmed/23284807
http://dx.doi.org/10.1371/journal.pone.0051895
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