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Amiodarone Induces Overexpression of Similar to Versican b to Repress the EGFR/Gsk3b/Snail Signaling Axis during Cardiac Valve Formation of Zebrafish Embryos

Although Amiodarone, a class III antiarrhythmic drug, inhibits zebrafish cardiac valve formation, the detailed molecular pathway is still unclear. Here, we proved that Amiodarone acts as an upstream regulator, stimulating similar to versican b (s-vcanb) overexpression at zebrafish embryonic heart an...

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Autores principales: Lee, Hung-Chieh, Lo, Hao-Chan, Lo, Dao-Ming, Su, Mai-Yan, Hu, Jia-Rung, Wu, Chin-Chieh, Chang, Sheng-Nan, Dai, Ming-Shen, Tsai, Chia‐Ti, Tsai, Huai-Jen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4674151/
https://www.ncbi.nlm.nih.gov/pubmed/26650936
http://dx.doi.org/10.1371/journal.pone.0144751
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author Lee, Hung-Chieh
Lo, Hao-Chan
Lo, Dao-Ming
Su, Mai-Yan
Hu, Jia-Rung
Wu, Chin-Chieh
Chang, Sheng-Nan
Dai, Ming-Shen
Tsai, Chia‐Ti
Tsai, Huai-Jen
author_facet Lee, Hung-Chieh
Lo, Hao-Chan
Lo, Dao-Ming
Su, Mai-Yan
Hu, Jia-Rung
Wu, Chin-Chieh
Chang, Sheng-Nan
Dai, Ming-Shen
Tsai, Chia‐Ti
Tsai, Huai-Jen
author_sort Lee, Hung-Chieh
collection PubMed
description Although Amiodarone, a class III antiarrhythmic drug, inhibits zebrafish cardiac valve formation, the detailed molecular pathway is still unclear. Here, we proved that Amiodarone acts as an upstream regulator, stimulating similar to versican b (s-vcanb) overexpression at zebrafish embryonic heart and promoting cdh-5 overexpression by inhibiting snail1b at atrioventricular canal (AVC), thus blocking invagination of endocardial cells and, as a result, preventing the formation of cardiac valves. A closer investigation showed that an intricate set of signaling events ultimately caused the up-regulation of cdh5. In particular, we investigated the role of EGFR signaling and the activity of Gsk3b. It was found that knockdown of EGFR signaling resulted in phenotypes similar to those of Amiodarone-treated embryos. Since the reduced phosphorylation of EGFR was rescued by knockdown of s-vcanb, it was concluded that the inhibition of EGFR activity by Amiodarone is s-vcanb-dependent. Moreover, the activity of Gsk3b, a downstream effector of EGFR, was greatly increased in both Amiodarone-treated embryos and EGFR-inhibited embryos. Therefore, it was concluded that reduced EGFR signaling induced by Amiodarone treatment results in the inhibition of Snail functions through increased Gsk3b activity, which, in turn, reduces snail1b expression, leading to the up-regulation the cdh5 at the AVC, finally resulting in defective formation of valves. This signaling cascade implicates the EGFR/Gsk3b/Snail axis as the molecular basis for the inhibition of cardiac valve formation by Amiodarone.
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spelling pubmed-46741512015-12-23 Amiodarone Induces Overexpression of Similar to Versican b to Repress the EGFR/Gsk3b/Snail Signaling Axis during Cardiac Valve Formation of Zebrafish Embryos Lee, Hung-Chieh Lo, Hao-Chan Lo, Dao-Ming Su, Mai-Yan Hu, Jia-Rung Wu, Chin-Chieh Chang, Sheng-Nan Dai, Ming-Shen Tsai, Chia‐Ti Tsai, Huai-Jen PLoS One Research Article Although Amiodarone, a class III antiarrhythmic drug, inhibits zebrafish cardiac valve formation, the detailed molecular pathway is still unclear. Here, we proved that Amiodarone acts as an upstream regulator, stimulating similar to versican b (s-vcanb) overexpression at zebrafish embryonic heart and promoting cdh-5 overexpression by inhibiting snail1b at atrioventricular canal (AVC), thus blocking invagination of endocardial cells and, as a result, preventing the formation of cardiac valves. A closer investigation showed that an intricate set of signaling events ultimately caused the up-regulation of cdh5. In particular, we investigated the role of EGFR signaling and the activity of Gsk3b. It was found that knockdown of EGFR signaling resulted in phenotypes similar to those of Amiodarone-treated embryos. Since the reduced phosphorylation of EGFR was rescued by knockdown of s-vcanb, it was concluded that the inhibition of EGFR activity by Amiodarone is s-vcanb-dependent. Moreover, the activity of Gsk3b, a downstream effector of EGFR, was greatly increased in both Amiodarone-treated embryos and EGFR-inhibited embryos. Therefore, it was concluded that reduced EGFR signaling induced by Amiodarone treatment results in the inhibition of Snail functions through increased Gsk3b activity, which, in turn, reduces snail1b expression, leading to the up-regulation the cdh5 at the AVC, finally resulting in defective formation of valves. This signaling cascade implicates the EGFR/Gsk3b/Snail axis as the molecular basis for the inhibition of cardiac valve formation by Amiodarone. Public Library of Science 2015-12-09 /pmc/articles/PMC4674151/ /pubmed/26650936 http://dx.doi.org/10.1371/journal.pone.0144751 Text en © 2015 Lee 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
Lee, Hung-Chieh
Lo, Hao-Chan
Lo, Dao-Ming
Su, Mai-Yan
Hu, Jia-Rung
Wu, Chin-Chieh
Chang, Sheng-Nan
Dai, Ming-Shen
Tsai, Chia‐Ti
Tsai, Huai-Jen
Amiodarone Induces Overexpression of Similar to Versican b to Repress the EGFR/Gsk3b/Snail Signaling Axis during Cardiac Valve Formation of Zebrafish Embryos
title Amiodarone Induces Overexpression of Similar to Versican b to Repress the EGFR/Gsk3b/Snail Signaling Axis during Cardiac Valve Formation of Zebrafish Embryos
title_full Amiodarone Induces Overexpression of Similar to Versican b to Repress the EGFR/Gsk3b/Snail Signaling Axis during Cardiac Valve Formation of Zebrafish Embryos
title_fullStr Amiodarone Induces Overexpression of Similar to Versican b to Repress the EGFR/Gsk3b/Snail Signaling Axis during Cardiac Valve Formation of Zebrafish Embryos
title_full_unstemmed Amiodarone Induces Overexpression of Similar to Versican b to Repress the EGFR/Gsk3b/Snail Signaling Axis during Cardiac Valve Formation of Zebrafish Embryos
title_short Amiodarone Induces Overexpression of Similar to Versican b to Repress the EGFR/Gsk3b/Snail Signaling Axis during Cardiac Valve Formation of Zebrafish Embryos
title_sort amiodarone induces overexpression of similar to versican b to repress the egfr/gsk3b/snail signaling axis during cardiac valve formation of zebrafish embryos
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4674151/
https://www.ncbi.nlm.nih.gov/pubmed/26650936
http://dx.doi.org/10.1371/journal.pone.0144751
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