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Amot and Yap1 regulate neuronal dendritic tree complexity and locomotor coordination in mice

The angiomotin (Amot)–Yes-associated protein 1 (Yap1) complex plays a major role in regulating the inhibition of cell contact, cellular polarity, and cell growth in many cell types. However, the function of Amot and the Hippo pathway transcription coactivator Yap1 in the central nervous system remai...

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Autores principales: Rojek, Katarzyna O., Krzemień, Joanna, Doleżyczek, Hubert, Boguszewski, Paweł M., Kaczmarek, Leszek, Konopka, Witold, Rylski, Marcin, Jaworski, Jacek, Holmgren, Lars, Prószyński, Tomasz J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6513106/
https://www.ncbi.nlm.nih.gov/pubmed/31042703
http://dx.doi.org/10.1371/journal.pbio.3000253
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author Rojek, Katarzyna O.
Krzemień, Joanna
Doleżyczek, Hubert
Boguszewski, Paweł M.
Kaczmarek, Leszek
Konopka, Witold
Rylski, Marcin
Jaworski, Jacek
Holmgren, Lars
Prószyński, Tomasz J.
author_facet Rojek, Katarzyna O.
Krzemień, Joanna
Doleżyczek, Hubert
Boguszewski, Paweł M.
Kaczmarek, Leszek
Konopka, Witold
Rylski, Marcin
Jaworski, Jacek
Holmgren, Lars
Prószyński, Tomasz J.
author_sort Rojek, Katarzyna O.
collection PubMed
description The angiomotin (Amot)–Yes-associated protein 1 (Yap1) complex plays a major role in regulating the inhibition of cell contact, cellular polarity, and cell growth in many cell types. However, the function of Amot and the Hippo pathway transcription coactivator Yap1 in the central nervous system remains unclear. We found that Amot is a critical mediator of dendritic morphogenesis in cultured hippocampal cells and Purkinje cells in the brain. Amot function in developing neurons depends on interactions with Yap1, which is also indispensable for dendrite growth and arborization in vitro. The conditional deletion of Amot and Yap1 in neurons led to a decrease in the complexity of Purkinje cell dendritic trees, abnormal cerebellar morphology, and impairments in motor coordination. Our results indicate that the function of Amot and Yap1 in dendrite growth does not rely on interactions with TEA domain (TEAD) transcription factors or the expression of Hippo pathway–dependent genes. Instead, Amot and Yap1 regulate dendrite development by affecting the phosphorylation of S6 kinase and its target S6 ribosomal protein.
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spelling pubmed-65131062019-05-31 Amot and Yap1 regulate neuronal dendritic tree complexity and locomotor coordination in mice Rojek, Katarzyna O. Krzemień, Joanna Doleżyczek, Hubert Boguszewski, Paweł M. Kaczmarek, Leszek Konopka, Witold Rylski, Marcin Jaworski, Jacek Holmgren, Lars Prószyński, Tomasz J. PLoS Biol Research Article The angiomotin (Amot)–Yes-associated protein 1 (Yap1) complex plays a major role in regulating the inhibition of cell contact, cellular polarity, and cell growth in many cell types. However, the function of Amot and the Hippo pathway transcription coactivator Yap1 in the central nervous system remains unclear. We found that Amot is a critical mediator of dendritic morphogenesis in cultured hippocampal cells and Purkinje cells in the brain. Amot function in developing neurons depends on interactions with Yap1, which is also indispensable for dendrite growth and arborization in vitro. The conditional deletion of Amot and Yap1 in neurons led to a decrease in the complexity of Purkinje cell dendritic trees, abnormal cerebellar morphology, and impairments in motor coordination. Our results indicate that the function of Amot and Yap1 in dendrite growth does not rely on interactions with TEA domain (TEAD) transcription factors or the expression of Hippo pathway–dependent genes. Instead, Amot and Yap1 regulate dendrite development by affecting the phosphorylation of S6 kinase and its target S6 ribosomal protein. Public Library of Science 2019-05-01 /pmc/articles/PMC6513106/ /pubmed/31042703 http://dx.doi.org/10.1371/journal.pbio.3000253 Text en © 2019 Rojek 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 (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Rojek, Katarzyna O.
Krzemień, Joanna
Doleżyczek, Hubert
Boguszewski, Paweł M.
Kaczmarek, Leszek
Konopka, Witold
Rylski, Marcin
Jaworski, Jacek
Holmgren, Lars
Prószyński, Tomasz J.
Amot and Yap1 regulate neuronal dendritic tree complexity and locomotor coordination in mice
title Amot and Yap1 regulate neuronal dendritic tree complexity and locomotor coordination in mice
title_full Amot and Yap1 regulate neuronal dendritic tree complexity and locomotor coordination in mice
title_fullStr Amot and Yap1 regulate neuronal dendritic tree complexity and locomotor coordination in mice
title_full_unstemmed Amot and Yap1 regulate neuronal dendritic tree complexity and locomotor coordination in mice
title_short Amot and Yap1 regulate neuronal dendritic tree complexity and locomotor coordination in mice
title_sort amot and yap1 regulate neuronal dendritic tree complexity and locomotor coordination in mice
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6513106/
https://www.ncbi.nlm.nih.gov/pubmed/31042703
http://dx.doi.org/10.1371/journal.pbio.3000253
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