Dynamic and differential regulation of stem cell factor FoxD3 in the neural crest is Encrypted in the genome.

The critical stem cell transcription factor FoxD3 is expressed by the premigratory and migrating neural crest, an embryonic stem cell population that forms diverse derivatives. Despite its important role in development and stem cell biology, little is known about what mediates FoxD3 activity in thes...

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Main Authors: Marcos S Simões-Costa, Sonja J McKeown, Joanne Tan-Cabugao, Tatjana Sauka-Spengler, Marianne E Bronner
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2012-01-01
Series:PLoS Genetics
Online Access:http://europepmc.org/articles/PMC3527204?pdf=render
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spelling doaj-35f62179967643d5b0ebc042183b59872020-11-25T00:08:00ZengPublic Library of Science (PLoS)PLoS Genetics1553-73901553-74042012-01-01812e100314210.1371/journal.pgen.1003142Dynamic and differential regulation of stem cell factor FoxD3 in the neural crest is Encrypted in the genome.Marcos S Simões-CostaSonja J McKeownJoanne Tan-CabugaoTatjana Sauka-SpenglerMarianne E BronnerThe critical stem cell transcription factor FoxD3 is expressed by the premigratory and migrating neural crest, an embryonic stem cell population that forms diverse derivatives. Despite its important role in development and stem cell biology, little is known about what mediates FoxD3 activity in these cells. We have uncovered two FoxD3 enhancers, NC1 and NC2, that drive reporter expression in spatially and temporally distinct manners. Whereas NC1 activity recapitulates initial FoxD3 expression in the cranial neural crest, NC2 activity recapitulates initial FoxD3 expression at vagal/trunk levels while appearing only later in migrating cranial crest. Detailed mutational analysis, in vivo chromatin immunoprecipitation, and morpholino knock-downs reveal that transcription factors Pax7 and Msx1/2 cooperate with the neural crest specifier gene, Ets1, to bind to the cranial NC1 regulatory element. However, at vagal/trunk levels, they function together with the neural plate border gene, Zic1, which directly binds to the NC2 enhancer. These results reveal dynamic and differential regulation of FoxD3 in distinct neural crest subpopulations, suggesting that heterogeneity is encrypted at the regulatory level. Isolation of neural crest enhancers not only allows establishment of direct regulatory connections underlying neural crest formation, but also provides valuable tools for tissue specific manipulation and investigation of neural crest cell identity in amniotes.http://europepmc.org/articles/PMC3527204?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Marcos S Simões-Costa
Sonja J McKeown
Joanne Tan-Cabugao
Tatjana Sauka-Spengler
Marianne E Bronner
spellingShingle Marcos S Simões-Costa
Sonja J McKeown
Joanne Tan-Cabugao
Tatjana Sauka-Spengler
Marianne E Bronner
Dynamic and differential regulation of stem cell factor FoxD3 in the neural crest is Encrypted in the genome.
PLoS Genetics
author_facet Marcos S Simões-Costa
Sonja J McKeown
Joanne Tan-Cabugao
Tatjana Sauka-Spengler
Marianne E Bronner
author_sort Marcos S Simões-Costa
title Dynamic and differential regulation of stem cell factor FoxD3 in the neural crest is Encrypted in the genome.
title_short Dynamic and differential regulation of stem cell factor FoxD3 in the neural crest is Encrypted in the genome.
title_full Dynamic and differential regulation of stem cell factor FoxD3 in the neural crest is Encrypted in the genome.
title_fullStr Dynamic and differential regulation of stem cell factor FoxD3 in the neural crest is Encrypted in the genome.
title_full_unstemmed Dynamic and differential regulation of stem cell factor FoxD3 in the neural crest is Encrypted in the genome.
title_sort dynamic and differential regulation of stem cell factor foxd3 in the neural crest is encrypted in the genome.
publisher Public Library of Science (PLoS)
series PLoS Genetics
issn 1553-7390
1553-7404
publishDate 2012-01-01
description The critical stem cell transcription factor FoxD3 is expressed by the premigratory and migrating neural crest, an embryonic stem cell population that forms diverse derivatives. Despite its important role in development and stem cell biology, little is known about what mediates FoxD3 activity in these cells. We have uncovered two FoxD3 enhancers, NC1 and NC2, that drive reporter expression in spatially and temporally distinct manners. Whereas NC1 activity recapitulates initial FoxD3 expression in the cranial neural crest, NC2 activity recapitulates initial FoxD3 expression at vagal/trunk levels while appearing only later in migrating cranial crest. Detailed mutational analysis, in vivo chromatin immunoprecipitation, and morpholino knock-downs reveal that transcription factors Pax7 and Msx1/2 cooperate with the neural crest specifier gene, Ets1, to bind to the cranial NC1 regulatory element. However, at vagal/trunk levels, they function together with the neural plate border gene, Zic1, which directly binds to the NC2 enhancer. These results reveal dynamic and differential regulation of FoxD3 in distinct neural crest subpopulations, suggesting that heterogeneity is encrypted at the regulatory level. Isolation of neural crest enhancers not only allows establishment of direct regulatory connections underlying neural crest formation, but also provides valuable tools for tissue specific manipulation and investigation of neural crest cell identity in amniotes.
url http://europepmc.org/articles/PMC3527204?pdf=render
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