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Junb controls lymphatic vascular development in zebrafish via miR-182

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Veröffentlicht in: Scientific reports 5(2015) Artikel-Nummer 15007, 16 Seiten
Personen und Körperschaften: Kiesow, Kristin (VerfasserIn), Bennewitz, Katrin (VerfasserIn), Cramer-Stoll, Sandra (VerfasserIn), Kroll, Jens (VerfasserIn)
Titel: Junb controls lymphatic vascular development in zebrafish via miR-182/ Kristin Kiesow, Katrin Bennewitz, Laura Gutierrez Miranda, Sandra J. Stoll, Bettina Hartenstein, Peter Angel, Jens Kroll, Marina Schorpp-Kistner
Format: E-Book-Kapitel
Sprache: Englisch
veröffentlicht:
13 October 2015
Gesamtaufnahme: : Scientific reports, 5(2015) Artikel-Nummer 15007, 16 Seiten
, volume:5
Quelle: Verbunddaten SWB
Lizenzfreie Online-Ressourcen
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contents JUNB, a subunit of the AP-1 transcription factor complex, mediates gene regulation in response to a plethora of extracellular stimuli. Previously, JUNB was shown to act as a critical positive regulator of blood vessel development and homeostasis as well as a negative regulator of proliferation, inflammation and tumour growth. Here, we demonstrate that the oncogenic miR-182 is a novel JUNB target. Loss-of-function studies by morpholino-mediated knockdown and the CRISPR/Cas9 technology identify a novel function for both JUNB and its target miR-182 in lymphatic vascular development in zebrafish. Furthermore, we show that miR-182 attenuates foxo1 expression indicating that strictly balanced Foxo1 levels are required for proper lymphatic vascular development in zebrafish. In conclusion, our findings uncover with the Junb/miR-182/Foxo1 regulatory axis a novel key player in governing lymphatic vascular morphogenesis in zebrafish.
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spelling Kiesow, Kristin VerfasserIn (DE-588)1034790447 (DE-627)746284640 (DE-576)381588726 aut, Junb controls lymphatic vascular development in zebrafish via miR-182 Kristin Kiesow, Katrin Bennewitz, Laura Gutierrez Miranda, Sandra J. Stoll, Bettina Hartenstein, Peter Angel, Jens Kroll, Marina Schorpp-Kistner, 13 October 2015, 16, Text txt rdacontent, Computermedien c rdamedia, Online-Ressource cr rdacarrier, Gesehen am 15.03.2018, JUNB, a subunit of the AP-1 transcription factor complex, mediates gene regulation in response to a plethora of extracellular stimuli. Previously, JUNB was shown to act as a critical positive regulator of blood vessel development and homeostasis as well as a negative regulator of proliferation, inflammation and tumour growth. Here, we demonstrate that the oncogenic miR-182 is a novel JUNB target. Loss-of-function studies by morpholino-mediated knockdown and the CRISPR/Cas9 technology identify a novel function for both JUNB and its target miR-182 in lymphatic vascular development in zebrafish. Furthermore, we show that miR-182 attenuates foxo1 expression indicating that strictly balanced Foxo1 levels are required for proper lymphatic vascular development in zebrafish. In conclusion, our findings uncover with the Junb/miR-182/Foxo1 regulatory axis a novel key player in governing lymphatic vascular morphogenesis in zebrafish., Bennewitz, Katrin 1981- VerfasserIn (DE-588)1154553140 (DE-627)1015942172 (DE-576)501101209 aut, Cramer-Stoll, Sandra 1983- VerfasserIn (DE-588)1019276096 (DE-627)684607786 (DE-576)357401212 aut, Kroll, Jens 1969- VerfasserIn (DE-588)1032295619 (DE-627)738209503 (DE-576)379947544 aut, Enthalten in Scientific reports [London] : Macmillan Publishers Limited, part of Springer Nature, 2011 5(2015) Artikel-Nummer 15007, 16 Seiten Online-Ressource (DE-627)663366712 (DE-600)2615211-3 (DE-576)346641179 2045-2322 nnns, volume:5 year:2015 extent:16, http://dx.doi.org/10.1038/srep15007 Verlag Resolving-System kostenfrei Volltext, https://www.nature.com/articles/srep15007 Verlag kostenfrei Volltext, http://dx.doi.org/10.1038/srep15007 LFER, LFER 2018-04-10T00:00:00Z
spellingShingle Kiesow, Kristin, Bennewitz, Katrin, Cramer-Stoll, Sandra, Kroll, Jens, Junb controls lymphatic vascular development in zebrafish via miR-182, JUNB, a subunit of the AP-1 transcription factor complex, mediates gene regulation in response to a plethora of extracellular stimuli. Previously, JUNB was shown to act as a critical positive regulator of blood vessel development and homeostasis as well as a negative regulator of proliferation, inflammation and tumour growth. Here, we demonstrate that the oncogenic miR-182 is a novel JUNB target. Loss-of-function studies by morpholino-mediated knockdown and the CRISPR/Cas9 technology identify a novel function for both JUNB and its target miR-182 in lymphatic vascular development in zebrafish. Furthermore, we show that miR-182 attenuates foxo1 expression indicating that strictly balanced Foxo1 levels are required for proper lymphatic vascular development in zebrafish. In conclusion, our findings uncover with the Junb/miR-182/Foxo1 regulatory axis a novel key player in governing lymphatic vascular morphogenesis in zebrafish.
swb_id_str 501101187
title Junb controls lymphatic vascular development in zebrafish via miR-182
title_auth Junb controls lymphatic vascular development in zebrafish via miR-182
title_full Junb controls lymphatic vascular development in zebrafish via miR-182 Kristin Kiesow, Katrin Bennewitz, Laura Gutierrez Miranda, Sandra J. Stoll, Bettina Hartenstein, Peter Angel, Jens Kroll, Marina Schorpp-Kistner
title_fullStr Junb controls lymphatic vascular development in zebrafish via miR-182 Kristin Kiesow, Katrin Bennewitz, Laura Gutierrez Miranda, Sandra J. Stoll, Bettina Hartenstein, Peter Angel, Jens Kroll, Marina Schorpp-Kistner
title_full_unstemmed Junb controls lymphatic vascular development in zebrafish via miR-182 Kristin Kiesow, Katrin Bennewitz, Laura Gutierrez Miranda, Sandra J. Stoll, Bettina Hartenstein, Peter Angel, Jens Kroll, Marina Schorpp-Kistner
title_in_hierarchy Junb controls lymphatic vascular development in zebrafish via miR-182 / Kristin Kiesow, Katrin Bennewitz, Laura Gutierrez Miranda, Sandra J. Stoll, Bettina Hartenstein, Peter Angel, Jens Kroll, Marina Schorpp-Kistner,
title_short Junb controls lymphatic vascular development in zebrafish via miR-182
title_sort junb controls lymphatic vascular development in zebrafish via mir 182
url http://dx.doi.org/10.1038/srep15007, https://www.nature.com/articles/srep15007