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Dusp1 modulates activin/smad2 mediated germ layer specification via FGF signal inhibition in Xenopus embryos

Activin, a member of the transforming growth factor (TGF-β) superfamily, induces mesoderm, endoderm and neuro-ectoderm formation in Xenopus embryos. Despite several previous studies, the complicated gene regulatory network and genes involved in this induction await more elaboration. We identified ex...

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Autores principales: Umair, Zobia, Kumar, Santosh, Rafiq, Khezina, Kumar, Vijay, Reman, Zia Ur, Lee, Seung-Hwan, Kim, SungChan, Lee, Jae-Yong, Lee, Unjoo, Kim, Jaebong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Taylor & Francis 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7782979/
https://www.ncbi.nlm.nih.gov/pubmed/33456720
http://dx.doi.org/10.1080/19768354.2020.1847732
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author Umair, Zobia
Kumar, Santosh
Rafiq, Khezina
Kumar, Vijay
Reman, Zia Ur
Lee, Seung-Hwan
Kim, SungChan
Lee, Jae-Yong
Lee, Unjoo
Kim, Jaebong
author_facet Umair, Zobia
Kumar, Santosh
Rafiq, Khezina
Kumar, Vijay
Reman, Zia Ur
Lee, Seung-Hwan
Kim, SungChan
Lee, Jae-Yong
Lee, Unjoo
Kim, Jaebong
author_sort Umair, Zobia
collection PubMed
description Activin, a member of the transforming growth factor (TGF-β) superfamily, induces mesoderm, endoderm and neuro-ectoderm formation in Xenopus embryos. Despite several previous studies, the complicated gene regulatory network and genes involved in this induction await more elaboration. We identified expression of various fibroblast growth factor (FGF) genes in activin/smad2 treated animal cap explants (AC) of Xenopus embryos. Activin/smad2 increased fgf3/8 expression, which was reduced by co-injection of dominant negative activin receptor (DNAR) and dominant negative Fgf receptor (DNFR). Interestingly, activin/smad2 also increased expression of dual specificity phosphatase 1 (dusp1) which has been known to inhibit Fgf signaling. Dusp1 overexpression in dorsal marginal zone caused gastrulation defect and decreased Jnk/Erk phosphorylation as well as Smad1 linker region phosphorylation. Dusp1 decreased neural and organizer gene expression with increasing of endodermal and ventral gene expression in smad2 treated AC, indicating that dusp1 modulates germ layer specification. Dusp1 decreased neural gene expression in fgf8 treated AC, suggesting that Erk and/or Jnk phosphorylation may be involved in fgf8 induced neural induction. In addition, dusp1 decreased the reporter gene activities of activin response element (ARE) and increased it for bmp response element (BRE), indicating that dusp1 modulates two opposite morphogen signaling of dorsal (activin/Smad2) and ventral (bmp/Smad1) tracks, acting to fine tune the Fgf/Erk pathway.
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spelling pubmed-77829792021-01-14 Dusp1 modulates activin/smad2 mediated germ layer specification via FGF signal inhibition in Xenopus embryos Umair, Zobia Kumar, Santosh Rafiq, Khezina Kumar, Vijay Reman, Zia Ur Lee, Seung-Hwan Kim, SungChan Lee, Jae-Yong Lee, Unjoo Kim, Jaebong Anim Cells Syst (Seoul) Neurobiology & Physiology Activin, a member of the transforming growth factor (TGF-β) superfamily, induces mesoderm, endoderm and neuro-ectoderm formation in Xenopus embryos. Despite several previous studies, the complicated gene regulatory network and genes involved in this induction await more elaboration. We identified expression of various fibroblast growth factor (FGF) genes in activin/smad2 treated animal cap explants (AC) of Xenopus embryos. Activin/smad2 increased fgf3/8 expression, which was reduced by co-injection of dominant negative activin receptor (DNAR) and dominant negative Fgf receptor (DNFR). Interestingly, activin/smad2 also increased expression of dual specificity phosphatase 1 (dusp1) which has been known to inhibit Fgf signaling. Dusp1 overexpression in dorsal marginal zone caused gastrulation defect and decreased Jnk/Erk phosphorylation as well as Smad1 linker region phosphorylation. Dusp1 decreased neural and organizer gene expression with increasing of endodermal and ventral gene expression in smad2 treated AC, indicating that dusp1 modulates germ layer specification. Dusp1 decreased neural gene expression in fgf8 treated AC, suggesting that Erk and/or Jnk phosphorylation may be involved in fgf8 induced neural induction. In addition, dusp1 decreased the reporter gene activities of activin response element (ARE) and increased it for bmp response element (BRE), indicating that dusp1 modulates two opposite morphogen signaling of dorsal (activin/Smad2) and ventral (bmp/Smad1) tracks, acting to fine tune the Fgf/Erk pathway. Taylor & Francis 2020-11-27 /pmc/articles/PMC7782979/ /pubmed/33456720 http://dx.doi.org/10.1080/19768354.2020.1847732 Text en © 2020 The Author(s). Published by Informa UK Limited, trading as Taylor & Francis Group https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) ), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Neurobiology & Physiology
Umair, Zobia
Kumar, Santosh
Rafiq, Khezina
Kumar, Vijay
Reman, Zia Ur
Lee, Seung-Hwan
Kim, SungChan
Lee, Jae-Yong
Lee, Unjoo
Kim, Jaebong
Dusp1 modulates activin/smad2 mediated germ layer specification via FGF signal inhibition in Xenopus embryos
title Dusp1 modulates activin/smad2 mediated germ layer specification via FGF signal inhibition in Xenopus embryos
title_full Dusp1 modulates activin/smad2 mediated germ layer specification via FGF signal inhibition in Xenopus embryos
title_fullStr Dusp1 modulates activin/smad2 mediated germ layer specification via FGF signal inhibition in Xenopus embryos
title_full_unstemmed Dusp1 modulates activin/smad2 mediated germ layer specification via FGF signal inhibition in Xenopus embryos
title_short Dusp1 modulates activin/smad2 mediated germ layer specification via FGF signal inhibition in Xenopus embryos
title_sort dusp1 modulates activin/smad2 mediated germ layer specification via fgf signal inhibition in xenopus embryos
topic Neurobiology & Physiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7782979/
https://www.ncbi.nlm.nih.gov/pubmed/33456720
http://dx.doi.org/10.1080/19768354.2020.1847732
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