Maintenance of cell type-specific connectivity and circuit function requires Tao kinase

It is unclear how circuit specificity and function are maintained during organismal growth. In this study, authors show that connectivity between primary nociceptors and their downstream neurons scales with animal size and that Ste20-like kinase Tao acts as a negative regulator of synaptic growth re...

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Autores principales: Federico Marcello Tenedini, Maria Sáez González, Chun Hu, Lisa Hedegaard Pedersen, Mabel Matamala Petruzzi, Bettina Spitzweck, Denan Wang, Melanie Richter, Meike Petersen, Emanuela Szpotowicz, Michaela Schweizer, Stephan J. Sigrist, Froylan Calderon de Anda, Peter Soba
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/eaf1877c7d184c2b88e5164aa3d00891
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spelling oai:doaj.org-article:eaf1877c7d184c2b88e5164aa3d008912021-12-02T14:40:21ZMaintenance of cell type-specific connectivity and circuit function requires Tao kinase10.1038/s41467-019-11408-12041-1723https://doaj.org/article/eaf1877c7d184c2b88e5164aa3d008912019-08-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-11408-1https://doaj.org/toc/2041-1723It is unclear how circuit specificity and function are maintained during organismal growth. In this study, authors show that connectivity between primary nociceptors and their downstream neurons scales with animal size and that Ste20-like kinase Tao acts as a negative regulator of synaptic growth required for maintenance of circuit specificity and connectivity.Federico Marcello TenediniMaria Sáez GonzálezChun HuLisa Hedegaard PedersenMabel Matamala PetruzziBettina SpitzweckDenan WangMelanie RichterMeike PetersenEmanuela SzpotowiczMichaela SchweizerStephan J. SigristFroylan Calderon de AndaPeter SobaNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-16 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Federico Marcello Tenedini
Maria Sáez González
Chun Hu
Lisa Hedegaard Pedersen
Mabel Matamala Petruzzi
Bettina Spitzweck
Denan Wang
Melanie Richter
Meike Petersen
Emanuela Szpotowicz
Michaela Schweizer
Stephan J. Sigrist
Froylan Calderon de Anda
Peter Soba
Maintenance of cell type-specific connectivity and circuit function requires Tao kinase
description It is unclear how circuit specificity and function are maintained during organismal growth. In this study, authors show that connectivity between primary nociceptors and their downstream neurons scales with animal size and that Ste20-like kinase Tao acts as a negative regulator of synaptic growth required for maintenance of circuit specificity and connectivity.
format article
author Federico Marcello Tenedini
Maria Sáez González
Chun Hu
Lisa Hedegaard Pedersen
Mabel Matamala Petruzzi
Bettina Spitzweck
Denan Wang
Melanie Richter
Meike Petersen
Emanuela Szpotowicz
Michaela Schweizer
Stephan J. Sigrist
Froylan Calderon de Anda
Peter Soba
author_facet Federico Marcello Tenedini
Maria Sáez González
Chun Hu
Lisa Hedegaard Pedersen
Mabel Matamala Petruzzi
Bettina Spitzweck
Denan Wang
Melanie Richter
Meike Petersen
Emanuela Szpotowicz
Michaela Schweizer
Stephan J. Sigrist
Froylan Calderon de Anda
Peter Soba
author_sort Federico Marcello Tenedini
title Maintenance of cell type-specific connectivity and circuit function requires Tao kinase
title_short Maintenance of cell type-specific connectivity and circuit function requires Tao kinase
title_full Maintenance of cell type-specific connectivity and circuit function requires Tao kinase
title_fullStr Maintenance of cell type-specific connectivity and circuit function requires Tao kinase
title_full_unstemmed Maintenance of cell type-specific connectivity and circuit function requires Tao kinase
title_sort maintenance of cell type-specific connectivity and circuit function requires tao kinase
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/eaf1877c7d184c2b88e5164aa3d00891
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