Sprouty4, an FGF inhibitor, displays cyclic gene expression under the control of the notch segmentation clock in the mouse PSM.

During vertebrate embryogenesis, somites are generated at regular intervals, the temporal and spatial periodicity of which is governed by a gradient of fibroblast growth factor (FGF) and/or Wnt signaling activity in the presomitic mesoderm (PSM) in conjunction with oscillations of gene expression of...

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Main Authors: Shinichi Hayashi, Taiju Shimoda, Masato Nakajima, Yuki Tsukada, Yuichi Sakumura, J Kim Dale, Miguel Maroto, Kenji Kohno, Takaaki Matsui, Yasumasa Bessho
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2009-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC2680047?pdf=render
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spelling doaj-f84e794f73b64de589eb6b82f24450e22020-11-24T20:47:59ZengPublic Library of Science (PLoS)PLoS ONE1932-62032009-01-0145e560310.1371/journal.pone.0005603Sprouty4, an FGF inhibitor, displays cyclic gene expression under the control of the notch segmentation clock in the mouse PSM.Shinichi HayashiTaiju ShimodaMasato NakajimaYuki TsukadaYuichi SakumuraJ Kim DaleMiguel MarotoKenji KohnoTakaaki MatsuiYasumasa BesshoDuring vertebrate embryogenesis, somites are generated at regular intervals, the temporal and spatial periodicity of which is governed by a gradient of fibroblast growth factor (FGF) and/or Wnt signaling activity in the presomitic mesoderm (PSM) in conjunction with oscillations of gene expression of components of the Notch, Wnt and FGF signaling pathways.Here, we show that the expression of Sprouty4, which encodes an FGF inhibitor, oscillates in 2-h cycles in the mouse PSM in synchrony with other oscillating genes from the Notch signaling pathway, such as lunatic fringe. Sprouty4 does not oscillate in Hes7-null mutant mouse embryos, and Hes7 can inhibit FGF-induced transcriptional activity of the Sprouty4 promoter.Thus, periodic expression of Sprouty4 is controlled by the Notch segmentation clock and may work as a mediator that links the temporal periodicity of clock gene oscillations with the spatial periodicity of boundary formation which is regulated by the gradient of FGF/Wnt activity.http://europepmc.org/articles/PMC2680047?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Shinichi Hayashi
Taiju Shimoda
Masato Nakajima
Yuki Tsukada
Yuichi Sakumura
J Kim Dale
Miguel Maroto
Kenji Kohno
Takaaki Matsui
Yasumasa Bessho
spellingShingle Shinichi Hayashi
Taiju Shimoda
Masato Nakajima
Yuki Tsukada
Yuichi Sakumura
J Kim Dale
Miguel Maroto
Kenji Kohno
Takaaki Matsui
Yasumasa Bessho
Sprouty4, an FGF inhibitor, displays cyclic gene expression under the control of the notch segmentation clock in the mouse PSM.
PLoS ONE
author_facet Shinichi Hayashi
Taiju Shimoda
Masato Nakajima
Yuki Tsukada
Yuichi Sakumura
J Kim Dale
Miguel Maroto
Kenji Kohno
Takaaki Matsui
Yasumasa Bessho
author_sort Shinichi Hayashi
title Sprouty4, an FGF inhibitor, displays cyclic gene expression under the control of the notch segmentation clock in the mouse PSM.
title_short Sprouty4, an FGF inhibitor, displays cyclic gene expression under the control of the notch segmentation clock in the mouse PSM.
title_full Sprouty4, an FGF inhibitor, displays cyclic gene expression under the control of the notch segmentation clock in the mouse PSM.
title_fullStr Sprouty4, an FGF inhibitor, displays cyclic gene expression under the control of the notch segmentation clock in the mouse PSM.
title_full_unstemmed Sprouty4, an FGF inhibitor, displays cyclic gene expression under the control of the notch segmentation clock in the mouse PSM.
title_sort sprouty4, an fgf inhibitor, displays cyclic gene expression under the control of the notch segmentation clock in the mouse psm.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2009-01-01
description During vertebrate embryogenesis, somites are generated at regular intervals, the temporal and spatial periodicity of which is governed by a gradient of fibroblast growth factor (FGF) and/or Wnt signaling activity in the presomitic mesoderm (PSM) in conjunction with oscillations of gene expression of components of the Notch, Wnt and FGF signaling pathways.Here, we show that the expression of Sprouty4, which encodes an FGF inhibitor, oscillates in 2-h cycles in the mouse PSM in synchrony with other oscillating genes from the Notch signaling pathway, such as lunatic fringe. Sprouty4 does not oscillate in Hes7-null mutant mouse embryos, and Hes7 can inhibit FGF-induced transcriptional activity of the Sprouty4 promoter.Thus, periodic expression of Sprouty4 is controlled by the Notch segmentation clock and may work as a mediator that links the temporal periodicity of clock gene oscillations with the spatial periodicity of boundary formation which is regulated by the gradient of FGF/Wnt activity.
url http://europepmc.org/articles/PMC2680047?pdf=render
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