A systematic survey of expression and function of zebrafish frizzled genes.

Wnt signaling is crucial for the regulation of numerous processes in development. Consistent with this, the gene families for both the ligands (Wnts) and receptors (Frizzleds) are very large. Surprisingly, while we have a reasonable understanding of the Wnt ligands likely to mediate specific Wnt-dep...

Full description

Bibliographic Details
Main Authors: Masataka Nikaido, Edward W P Law, Robert N Kelsh
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2013-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3551900?pdf=render
_version_ 1811199897215434752
author Masataka Nikaido
Edward W P Law
Robert N Kelsh
author_facet Masataka Nikaido
Edward W P Law
Robert N Kelsh
author_sort Masataka Nikaido
collection DOAJ
description Wnt signaling is crucial for the regulation of numerous processes in development. Consistent with this, the gene families for both the ligands (Wnts) and receptors (Frizzleds) are very large. Surprisingly, while we have a reasonable understanding of the Wnt ligands likely to mediate specific Wnt-dependent processes, the corresponding receptors usually remain to be elucidated. Taking advantage of the zebrafish model's excellent genomic and genetic properties, we undertook a comprehensive analysis of the expression patterns of frizzled (fzd) genes in zebrafish. To explore their functions, we focused on testing their requirement in several developmental events known to be regulated by Wnt signaling, convergent extension movements of gastrulation, neural crest induction, and melanocyte specification. We found fourteen distinct fzd genes in the zebrafish genome. Systematic analysis of their expression patterns between 1-somite and 30 hours post-fertilization revealed complex, dynamic and overlapping expression patterns. This analysis demonstrated that only fzd3a, fzd9b, and fzd10 are expressed in the dorsal neural tube at stages corresponding to the timing of melanocyte specification. Surprisingly, however, morpholino knockdown of these, alone or in combination, gave no indication of reduction of melanocytes, suggesting the important involvement of untested fzds or another type of Wnt receptor in this process. Likewise, we found only fzd7b and fzd10 expressed at the border of the neural plate at stages appropriate for neural crest induction. However, neural crest markers were not reduced by knockdown of these receptors. Instead, these morpholino knockdown studies showed that fzd7a and fzd7b work co-operatively to regulate convergent extension movement during gastrulation. Furthermore, we show that the two fzd7 genes function together with fzd10 to regulate epiboly movements and mesoderm differentiation.
first_indexed 2024-04-12T01:55:43Z
format Article
id doaj.art-3152589023024ecf9a2d1fbe6351b06d
institution Directory Open Access Journal
issn 1932-6203
language English
last_indexed 2024-04-12T01:55:43Z
publishDate 2013-01-01
publisher Public Library of Science (PLoS)
record_format Article
series PLoS ONE
spelling doaj.art-3152589023024ecf9a2d1fbe6351b06d2022-12-22T03:52:49ZengPublic Library of Science (PLoS)PLoS ONE1932-62032013-01-0181e5483310.1371/journal.pone.0054833A systematic survey of expression and function of zebrafish frizzled genes.Masataka NikaidoEdward W P LawRobert N KelshWnt signaling is crucial for the regulation of numerous processes in development. Consistent with this, the gene families for both the ligands (Wnts) and receptors (Frizzleds) are very large. Surprisingly, while we have a reasonable understanding of the Wnt ligands likely to mediate specific Wnt-dependent processes, the corresponding receptors usually remain to be elucidated. Taking advantage of the zebrafish model's excellent genomic and genetic properties, we undertook a comprehensive analysis of the expression patterns of frizzled (fzd) genes in zebrafish. To explore their functions, we focused on testing their requirement in several developmental events known to be regulated by Wnt signaling, convergent extension movements of gastrulation, neural crest induction, and melanocyte specification. We found fourteen distinct fzd genes in the zebrafish genome. Systematic analysis of their expression patterns between 1-somite and 30 hours post-fertilization revealed complex, dynamic and overlapping expression patterns. This analysis demonstrated that only fzd3a, fzd9b, and fzd10 are expressed in the dorsal neural tube at stages corresponding to the timing of melanocyte specification. Surprisingly, however, morpholino knockdown of these, alone or in combination, gave no indication of reduction of melanocytes, suggesting the important involvement of untested fzds or another type of Wnt receptor in this process. Likewise, we found only fzd7b and fzd10 expressed at the border of the neural plate at stages appropriate for neural crest induction. However, neural crest markers were not reduced by knockdown of these receptors. Instead, these morpholino knockdown studies showed that fzd7a and fzd7b work co-operatively to regulate convergent extension movement during gastrulation. Furthermore, we show that the two fzd7 genes function together with fzd10 to regulate epiboly movements and mesoderm differentiation.http://europepmc.org/articles/PMC3551900?pdf=render
spellingShingle Masataka Nikaido
Edward W P Law
Robert N Kelsh
A systematic survey of expression and function of zebrafish frizzled genes.
PLoS ONE
title A systematic survey of expression and function of zebrafish frizzled genes.
title_full A systematic survey of expression and function of zebrafish frizzled genes.
title_fullStr A systematic survey of expression and function of zebrafish frizzled genes.
title_full_unstemmed A systematic survey of expression and function of zebrafish frizzled genes.
title_short A systematic survey of expression and function of zebrafish frizzled genes.
title_sort systematic survey of expression and function of zebrafish frizzled genes
url http://europepmc.org/articles/PMC3551900?pdf=render
work_keys_str_mv AT masatakanikaido asystematicsurveyofexpressionandfunctionofzebrafishfrizzledgenes
AT edwardwplaw asystematicsurveyofexpressionandfunctionofzebrafishfrizzledgenes
AT robertnkelsh asystematicsurveyofexpressionandfunctionofzebrafishfrizzledgenes
AT masatakanikaido systematicsurveyofexpressionandfunctionofzebrafishfrizzledgenes
AT edwardwplaw systematicsurveyofexpressionandfunctionofzebrafishfrizzledgenes
AT robertnkelsh systematicsurveyofexpressionandfunctionofzebrafishfrizzledgenes