Vestigial-like 3 is a novel Ets1 interacting partner and regulates trigeminal nerve formation and cranial neural crest migration

Drosophila Vestigial is the founding member of a protein family containing a highly conserved domain, called Tondu, which mediates their interaction with members of the TEAD family of transcription factors (Scalloped in Drosophila). In Drosophila, the Vestigial/Scalloped complex controls wing develo...

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Main Authors: Emilie Simon, Nadine Thézé, Sandrine Fédou, Pierre Thiébaud, Corinne Faucheux
Format: Article
Language:English
Published: The Company of Biologists 2017-10-01
Series:Biology Open
Subjects:
Online Access:http://bio.biologists.org/content/6/10/1528
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spelling doaj-9f237413e4da4ccd91ef01e7842ab3442021-06-02T15:38:09ZengThe Company of BiologistsBiology Open2046-63902017-10-016101528154010.1242/bio.026153026153Vestigial-like 3 is a novel Ets1 interacting partner and regulates trigeminal nerve formation and cranial neural crest migrationEmilie Simon0Nadine Thézé1Sandrine Fédou2Pierre Thiébaud3Corinne Faucheux4 Univ. Bordeaux, INSERM U1035, F-33076 Bordeaux, France Univ. Bordeaux, INSERM U1035, F-33076 Bordeaux, France Univ. Bordeaux, INSERM U1035, F-33076 Bordeaux, France Univ. Bordeaux, INSERM U1035, F-33076 Bordeaux, France Univ. Bordeaux, INSERM U1035, F-33076 Bordeaux, France Drosophila Vestigial is the founding member of a protein family containing a highly conserved domain, called Tondu, which mediates their interaction with members of the TEAD family of transcription factors (Scalloped in Drosophila). In Drosophila, the Vestigial/Scalloped complex controls wing development by regulating the expression of target genes through binding to MCAT sequences. In vertebrates, there are four Vestigial-like genes, the functions of which are still not well understood. Here, we describe the regulation and function of vestigial-like 3 (vgll3) during Xenopus early development. A combination of signals, including FGF8, Wnt8a, Hoxa2, Hoxb2 and retinoic acid, limits vgll3 expression to hindbrain rhombomere 2. We show that vgll3 regulates trigeminal placode and nerve formation and is required for normal neural crest development by affecting their migration and adhesion properties. At the molecular level, vgll3 is a potent activator of pax3, zic1, Wnt and FGF, which are important for brain patterning and neural crest cell formation. Vgll3 interacts in the embryo with Tead proteins but unexpectedly with Ets1, with which it is able to stimulate a MCAT driven luciferase reporter gene. Our findings highlight a critical function for vgll3 in vertebrate early development.http://bio.biologists.org/content/6/10/1528Vestigial-likeEts1XenopusCranial neural crestTrigeminal nerveWnt-FGF
collection DOAJ
language English
format Article
sources DOAJ
author Emilie Simon
Nadine Thézé
Sandrine Fédou
Pierre Thiébaud
Corinne Faucheux
spellingShingle Emilie Simon
Nadine Thézé
Sandrine Fédou
Pierre Thiébaud
Corinne Faucheux
Vestigial-like 3 is a novel Ets1 interacting partner and regulates trigeminal nerve formation and cranial neural crest migration
Biology Open
Vestigial-like
Ets1
Xenopus
Cranial neural crest
Trigeminal nerve
Wnt-FGF
author_facet Emilie Simon
Nadine Thézé
Sandrine Fédou
Pierre Thiébaud
Corinne Faucheux
author_sort Emilie Simon
title Vestigial-like 3 is a novel Ets1 interacting partner and regulates trigeminal nerve formation and cranial neural crest migration
title_short Vestigial-like 3 is a novel Ets1 interacting partner and regulates trigeminal nerve formation and cranial neural crest migration
title_full Vestigial-like 3 is a novel Ets1 interacting partner and regulates trigeminal nerve formation and cranial neural crest migration
title_fullStr Vestigial-like 3 is a novel Ets1 interacting partner and regulates trigeminal nerve formation and cranial neural crest migration
title_full_unstemmed Vestigial-like 3 is a novel Ets1 interacting partner and regulates trigeminal nerve formation and cranial neural crest migration
title_sort vestigial-like 3 is a novel ets1 interacting partner and regulates trigeminal nerve formation and cranial neural crest migration
publisher The Company of Biologists
series Biology Open
issn 2046-6390
publishDate 2017-10-01
description Drosophila Vestigial is the founding member of a protein family containing a highly conserved domain, called Tondu, which mediates their interaction with members of the TEAD family of transcription factors (Scalloped in Drosophila). In Drosophila, the Vestigial/Scalloped complex controls wing development by regulating the expression of target genes through binding to MCAT sequences. In vertebrates, there are four Vestigial-like genes, the functions of which are still not well understood. Here, we describe the regulation and function of vestigial-like 3 (vgll3) during Xenopus early development. A combination of signals, including FGF8, Wnt8a, Hoxa2, Hoxb2 and retinoic acid, limits vgll3 expression to hindbrain rhombomere 2. We show that vgll3 regulates trigeminal placode and nerve formation and is required for normal neural crest development by affecting their migration and adhesion properties. At the molecular level, vgll3 is a potent activator of pax3, zic1, Wnt and FGF, which are important for brain patterning and neural crest cell formation. Vgll3 interacts in the embryo with Tead proteins but unexpectedly with Ets1, with which it is able to stimulate a MCAT driven luciferase reporter gene. Our findings highlight a critical function for vgll3 in vertebrate early development.
topic Vestigial-like
Ets1
Xenopus
Cranial neural crest
Trigeminal nerve
Wnt-FGF
url http://bio.biologists.org/content/6/10/1528
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