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YAP and TAZ control peripheral myelination and the expression of laminin receptors in Schwann cells

Myelination is essential for nervous system function. Schwann cells interact with neurons and the basal lamina to myelinate axons, using known receptors, signals and transcription factors. In contrast, the transcriptional control of axonal sorting and the role of mechanotransduction in myelination a...

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Autores principales: Poitelon, Y, Lopez-Anido, C, Catignas, K, Berti, C, Palmisano, M, Williamson, C, Ameroso, D, Abiko, K, Hwang, Y, Gregorieff, A, Wrana, J, Asmani, M, Zhao, R, Sim, FJ, Wrabetz, L, Svaren, J, Feltri, ML
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4925303/
https://www.ncbi.nlm.nih.gov/pubmed/27273766
http://dx.doi.org/10.1038/nn.4316
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author Poitelon, Y
Lopez-Anido, C
Catignas, K
Berti, C
Palmisano, M
Williamson, C
Ameroso, D
Abiko, K
Hwang, Y
Gregorieff, A
Wrana, J
Asmani, M
Zhao, R
Sim, FJ
Wrabetz, L
Svaren, J
Feltri, ML
author_facet Poitelon, Y
Lopez-Anido, C
Catignas, K
Berti, C
Palmisano, M
Williamson, C
Ameroso, D
Abiko, K
Hwang, Y
Gregorieff, A
Wrana, J
Asmani, M
Zhao, R
Sim, FJ
Wrabetz, L
Svaren, J
Feltri, ML
author_sort Poitelon, Y
collection PubMed
description Myelination is essential for nervous system function. Schwann cells interact with neurons and the basal lamina to myelinate axons, using known receptors, signals and transcription factors. In contrast, the transcriptional control of axonal sorting and the role of mechanotransduction in myelination are largely unknown. Yap and Taz are effectors of the Hippo pathway that integrate chemical and mechanical signals in cells. We describe a previously unknown role for the Hippo pathway in myelination. Using conditional mutagenesis in mice we show that Taz is required in Schwann cells for radial sorting and myelination, and that Yap is redundant with Taz. Yap/Taz are activated in Schwann cells by mechanical stimuli, and regulate Schwann cell proliferation and transcription of basal lamina receptor genes, both necessary for proper radial sorting of axons and subsequent myelination. These data link transcriptional effectors of the Hippo pathway and of mechanotransduction to myelin formation in Schwann cells.
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spelling pubmed-49253032016-12-06 YAP and TAZ control peripheral myelination and the expression of laminin receptors in Schwann cells Poitelon, Y Lopez-Anido, C Catignas, K Berti, C Palmisano, M Williamson, C Ameroso, D Abiko, K Hwang, Y Gregorieff, A Wrana, J Asmani, M Zhao, R Sim, FJ Wrabetz, L Svaren, J Feltri, ML Nat Neurosci Article Myelination is essential for nervous system function. Schwann cells interact with neurons and the basal lamina to myelinate axons, using known receptors, signals and transcription factors. In contrast, the transcriptional control of axonal sorting and the role of mechanotransduction in myelination are largely unknown. Yap and Taz are effectors of the Hippo pathway that integrate chemical and mechanical signals in cells. We describe a previously unknown role for the Hippo pathway in myelination. Using conditional mutagenesis in mice we show that Taz is required in Schwann cells for radial sorting and myelination, and that Yap is redundant with Taz. Yap/Taz are activated in Schwann cells by mechanical stimuli, and regulate Schwann cell proliferation and transcription of basal lamina receptor genes, both necessary for proper radial sorting of axons and subsequent myelination. These data link transcriptional effectors of the Hippo pathway and of mechanotransduction to myelin formation in Schwann cells. 2016-06-06 2016-07 /pmc/articles/PMC4925303/ /pubmed/27273766 http://dx.doi.org/10.1038/nn.4316 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Poitelon, Y
Lopez-Anido, C
Catignas, K
Berti, C
Palmisano, M
Williamson, C
Ameroso, D
Abiko, K
Hwang, Y
Gregorieff, A
Wrana, J
Asmani, M
Zhao, R
Sim, FJ
Wrabetz, L
Svaren, J
Feltri, ML
YAP and TAZ control peripheral myelination and the expression of laminin receptors in Schwann cells
title YAP and TAZ control peripheral myelination and the expression of laminin receptors in Schwann cells
title_full YAP and TAZ control peripheral myelination and the expression of laminin receptors in Schwann cells
title_fullStr YAP and TAZ control peripheral myelination and the expression of laminin receptors in Schwann cells
title_full_unstemmed YAP and TAZ control peripheral myelination and the expression of laminin receptors in Schwann cells
title_short YAP and TAZ control peripheral myelination and the expression of laminin receptors in Schwann cells
title_sort yap and taz control peripheral myelination and the expression of laminin receptors in schwann cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4925303/
https://www.ncbi.nlm.nih.gov/pubmed/27273766
http://dx.doi.org/10.1038/nn.4316
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