Dishevelled-3 conformation dynamics analyzed by FRET-based biosensors reveals a key role of casein kinase 1
Dishevelled (DVL) is the key component of Wnt signaling pathway that acts as a signaling hub. Here, authors study the conformational dynamics of DVL3 in vivo using their engineered FlAsH-based FRET biosensors and describe how Wnt activation opens DVL and facilitates Frizzled recruitment.
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2019
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oai:doaj.org-article:c656ec6d84244ea4ba47e39232d919952021-12-02T14:38:40ZDishevelled-3 conformation dynamics analyzed by FRET-based biosensors reveals a key role of casein kinase 110.1038/s41467-019-09651-72041-1723https://doaj.org/article/c656ec6d84244ea4ba47e39232d919952019-04-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-09651-7https://doaj.org/toc/2041-1723Dishevelled (DVL) is the key component of Wnt signaling pathway that acts as a signaling hub. Here, authors study the conformational dynamics of DVL3 in vivo using their engineered FlAsH-based FRET biosensors and describe how Wnt activation opens DVL and facilitates Frizzled recruitment.Jakub HarnošMaria Consuelo Alonso CañizalMiroslav JurásekJitender KumarCornelia HollerAlexandra SchambonyKateřina HanákováOndřej BernatíkZbyněk ZdráhalKristína GömöryováTomáš GybeľTomasz Witold RadaszkiewiczMarek KravecLukáš TrantírekJan RynešZankruti DaveAna Iris Fernández-LlamazaresRobert VáchaKonstantinos TripsianesCarsten HoffmannVítězslav BryjaNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-18 (2019) |
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Science Q Jakub Harnoš Maria Consuelo Alonso Cañizal Miroslav Jurásek Jitender Kumar Cornelia Holler Alexandra Schambony Kateřina Hanáková Ondřej Bernatík Zbyněk Zdráhal Kristína Gömöryová Tomáš Gybeľ Tomasz Witold Radaszkiewicz Marek Kravec Lukáš Trantírek Jan Ryneš Zankruti Dave Ana Iris Fernández-Llamazares Robert Vácha Konstantinos Tripsianes Carsten Hoffmann Vítězslav Bryja Dishevelled-3 conformation dynamics analyzed by FRET-based biosensors reveals a key role of casein kinase 1 |
description |
Dishevelled (DVL) is the key component of Wnt signaling pathway that acts as a signaling hub. Here, authors study the conformational dynamics of DVL3 in vivo using their engineered FlAsH-based FRET biosensors and describe how Wnt activation opens DVL and facilitates Frizzled recruitment. |
format |
article |
author |
Jakub Harnoš Maria Consuelo Alonso Cañizal Miroslav Jurásek Jitender Kumar Cornelia Holler Alexandra Schambony Kateřina Hanáková Ondřej Bernatík Zbyněk Zdráhal Kristína Gömöryová Tomáš Gybeľ Tomasz Witold Radaszkiewicz Marek Kravec Lukáš Trantírek Jan Ryneš Zankruti Dave Ana Iris Fernández-Llamazares Robert Vácha Konstantinos Tripsianes Carsten Hoffmann Vítězslav Bryja |
author_facet |
Jakub Harnoš Maria Consuelo Alonso Cañizal Miroslav Jurásek Jitender Kumar Cornelia Holler Alexandra Schambony Kateřina Hanáková Ondřej Bernatík Zbyněk Zdráhal Kristína Gömöryová Tomáš Gybeľ Tomasz Witold Radaszkiewicz Marek Kravec Lukáš Trantírek Jan Ryneš Zankruti Dave Ana Iris Fernández-Llamazares Robert Vácha Konstantinos Tripsianes Carsten Hoffmann Vítězslav Bryja |
author_sort |
Jakub Harnoš |
title |
Dishevelled-3 conformation dynamics analyzed by FRET-based biosensors reveals a key role of casein kinase 1 |
title_short |
Dishevelled-3 conformation dynamics analyzed by FRET-based biosensors reveals a key role of casein kinase 1 |
title_full |
Dishevelled-3 conformation dynamics analyzed by FRET-based biosensors reveals a key role of casein kinase 1 |
title_fullStr |
Dishevelled-3 conformation dynamics analyzed by FRET-based biosensors reveals a key role of casein kinase 1 |
title_full_unstemmed |
Dishevelled-3 conformation dynamics analyzed by FRET-based biosensors reveals a key role of casein kinase 1 |
title_sort |
dishevelled-3 conformation dynamics analyzed by fret-based biosensors reveals a key role of casein kinase 1 |
publisher |
Nature Portfolio |
publishDate |
2019 |
url |
https://doaj.org/article/c656ec6d84244ea4ba47e39232d91995 |
work_keys_str_mv |
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