Literature DB >> 21385767

FGF/MAPK/Ets signaling renders pigment cell precursors competent to respond to Wnt signal by directly controlling Ci-Tcf transcription.

Paola Squarzoni1, Fateema Parveen, Laura Zanetti, Filomena Ristoratore, Antonietta Spagnuolo.   

Abstract

FGF and Wnt pathways constitute two fundamental signaling cascades, which appear to crosstalk in cooperative or antagonistic fashions in several developmental processes. In vertebrates, both cascades are involved in pigment cell development, but the possible interplay between FGF and Wnt remains to be elucidated. In this study, we have investigated the role of FGF and Wnt signaling in development of the pigment cells in the sensory organs of C. intestinalis. This species possesses the basic features of an ancestral chordate, thus sharing conserved molecular developmental mechanisms with vertebrates. Chemical and targeted perturbation approaches revealed that a FGF signal, spreading in time from early gastrulation to neural tube closure, is responsible for pigment cell precursor induction. This signal is transmitted via the MAPK pathway, which activates the Ci-Ets1/2 transcription factor. Targeted perturbation of Ci-TCF, a downstream factor of the canonical Wnt pathway, indicated its contribution to pigment cell differentiation Furthermore, analyses of the Ci-Tcf regulatory region revealed the involvement of the FGF effector, Ci-Ets1/2, in Ci-Tcf transcriptional regulation in pigment cell precursors. Our results indicate that both FGF and the canonical Wnt pathways are involved in C. intestinalis pigment cell induction and differentiation. Moreover, we present a case of direct transcriptional regulation exerted by the FGF signaling cascade, via the MAPK-ERK-Ets1/2, on the Wnt downstream gene Ci-Tcf. Several examples of FGF/Wnt signaling crosstalk have been described in different developmental processes; however, to our knowledge, FGF-Wnt cross-interaction at the transcriptional level has never been previously reported. These findings further contribute to clarifying the multitude of FGF-Wnt pathway interactions.

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Year:  2011        PMID: 21385767     DOI: 10.1242/dev.057323

Source DB:  PubMed          Journal:  Development        ISSN: 0950-1991            Impact factor:   6.868


  23 in total

1.  Initial deployment of the cardiogenic gene regulatory network in the basal chordate, Ciona intestinalis.

Authors:  Arielle Woznica; Maximilian Haeussler; Ella Starobinska; Jessica Jemmett; Younan Li; David Mount; Brad Davidson
Journal:  Dev Biol       Date:  2012-05-14       Impact factor: 3.582

2.  Ephrin-mediated restriction of ERK1/2 activity delimits the number of pigment cells in the Ciona CNS.

Authors:  Nicolas Haupaix; Philip B Abitua; Cathy Sirour; Hitoyoshi Yasuo; Michael Levine; Clare Hudson
Journal:  Dev Biol       Date:  2014-07-22       Impact factor: 3.582

3.  Integration of Wnt and FGF signaling in the Xenopus gastrula at TCF and Ets binding sites shows the importance of short-range repression by TCF in patterning the marginal zone.

Authors:  Rachel A S Kjolby; Marta Truchado-Garcia; Suvruta Iruvanti; Richard M Harland
Journal:  Development       Date:  2019-08-09       Impact factor: 6.868

Review 4.  The cell survival pathways of the primordial RNA-DNA complex remain conserved in the extant genomes and may function as proto-oncogenes.

Authors:  J G Sinkovics
Journal:  Eur J Microbiol Immunol (Bp)       Date:  2015-03-26

5.  Initial characterization of Wnt-Tcf functions during Ciona heart development.

Authors:  Nicole A Kaplan; Wei Wang; Lionel Christiaen
Journal:  Dev Biol       Date:  2019-01-08       Impact factor: 3.582

6.  Diverse ETS transcription factors mediate FGF signaling in the Ciona anterior neural plate.

Authors:  T Blair Gainous; Eileen Wagner; Michael Levine
Journal:  Dev Biol       Date:  2015-01-07       Impact factor: 3.582

Review 7.  Setting appropriate boundaries: fate, patterning and competence at the neural plate border.

Authors:  Andrew K Groves; Carole LaBonne
Journal:  Dev Biol       Date:  2013-12-07       Impact factor: 3.582

8.  Human skin neural crest progenitor cells are susceptible to BRAF(V600E)-induced transformation.

Authors:  S M Kumar; J Dai; S Li; R Yang; H Yu; K L Nathanson; S Liu; H Zhou; J Guo; X Xu
Journal:  Oncogene       Date:  2013-01-21       Impact factor: 9.867

9.  FOX and ETS family transcription factors regulate the pigment cell lineage in planarians.

Authors:  Xinwen He; Nicole Lindsay-Mosher; Yan Li; Alyssa M Molinaro; Jason Pellettieri; Bret J Pearson
Journal:  Development       Date:  2017-11-20       Impact factor: 6.868

10.  Progenitors of the protochordate ocellus as an evolutionary origin of the neural crest.

Authors:  Evgeniy Ivashkin; Igor Adameyko
Journal:  Evodevo       Date:  2013-04-10       Impact factor: 2.250

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