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Divergent Roles of CYP26B1 and Endogenous Retinoic Acid in Mouse Fetal Gonads

In female mammals, germ cells enter meiosis in the fetal ovaries, while in males, meiosis is prevented until postnatal development. Retinoic acid (RA) is considered the main inducer of meiotic entry, as it stimulates Stra8 which is required for the mitotic/meiotic switch. In fetal testes, the RA-deg...

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Autores principales: Bellutti, Laura, Abby, Emilie, Tourpin, Sophie, Messiaen, Sébastien, Moison, Delphine, Trautmann, Emilie, Guerquin, Marie-Justine, Rouiller-Fabre, Virginie, Habert, René, Livera, Gabriel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
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Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6843241/
https://www.ncbi.nlm.nih.gov/pubmed/31561560
http://dx.doi.org/10.3390/biom9100536
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author Bellutti, Laura
Abby, Emilie
Tourpin, Sophie
Messiaen, Sébastien
Moison, Delphine
Trautmann, Emilie
Guerquin, Marie-Justine
Rouiller-Fabre, Virginie
Habert, René
Livera, Gabriel
author_facet Bellutti, Laura
Abby, Emilie
Tourpin, Sophie
Messiaen, Sébastien
Moison, Delphine
Trautmann, Emilie
Guerquin, Marie-Justine
Rouiller-Fabre, Virginie
Habert, René
Livera, Gabriel
author_sort Bellutti, Laura
collection PubMed
description In female mammals, germ cells enter meiosis in the fetal ovaries, while in males, meiosis is prevented until postnatal development. Retinoic acid (RA) is considered the main inducer of meiotic entry, as it stimulates Stra8 which is required for the mitotic/meiotic switch. In fetal testes, the RA-degrading enzyme CYP26B1 prevents meiosis initiation. However, the role of endogenous RA in female meiosis entry has never been demonstrated in vivo. In this study, we demonstrate that some effects of RA in mouse fetal gonads are not recapitulated by the invalidation or up-regulation of CYP26B1. In organ culture of fetal testes, RA stimulates testosterone production and inhibits Sertoli cell proliferation. In the ovaries, short-term inhibition of RA-signaling does not decrease Stra8 expression. We develop a gain-of-function model to express CYP26A1 or CYP26B1. Only CYP26B1 fully prevents STRA8 induction in female germ cells, confirming its role as part of the meiotic prevention machinery. CYP26A1, a very potent RA degrading enzyme, does not impair the formation of STRA8-positive cells, but decreases Stra8 transcription. Collectively, our data reveal that CYP26B1 has other activities apart from metabolizing RA in fetal gonads and suggest a role of endogenous RA in amplifying Stra8, rather than being the initial inducer of Stra8. These findings should reactivate the quest to identify meiotic preventing or inducing substances.
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spelling pubmed-68432412019-11-25 Divergent Roles of CYP26B1 and Endogenous Retinoic Acid in Mouse Fetal Gonads Bellutti, Laura Abby, Emilie Tourpin, Sophie Messiaen, Sébastien Moison, Delphine Trautmann, Emilie Guerquin, Marie-Justine Rouiller-Fabre, Virginie Habert, René Livera, Gabriel Biomolecules Article In female mammals, germ cells enter meiosis in the fetal ovaries, while in males, meiosis is prevented until postnatal development. Retinoic acid (RA) is considered the main inducer of meiotic entry, as it stimulates Stra8 which is required for the mitotic/meiotic switch. In fetal testes, the RA-degrading enzyme CYP26B1 prevents meiosis initiation. However, the role of endogenous RA in female meiosis entry has never been demonstrated in vivo. In this study, we demonstrate that some effects of RA in mouse fetal gonads are not recapitulated by the invalidation or up-regulation of CYP26B1. In organ culture of fetal testes, RA stimulates testosterone production and inhibits Sertoli cell proliferation. In the ovaries, short-term inhibition of RA-signaling does not decrease Stra8 expression. We develop a gain-of-function model to express CYP26A1 or CYP26B1. Only CYP26B1 fully prevents STRA8 induction in female germ cells, confirming its role as part of the meiotic prevention machinery. CYP26A1, a very potent RA degrading enzyme, does not impair the formation of STRA8-positive cells, but decreases Stra8 transcription. Collectively, our data reveal that CYP26B1 has other activities apart from metabolizing RA in fetal gonads and suggest a role of endogenous RA in amplifying Stra8, rather than being the initial inducer of Stra8. These findings should reactivate the quest to identify meiotic preventing or inducing substances. MDPI 2019-09-26 /pmc/articles/PMC6843241/ /pubmed/31561560 http://dx.doi.org/10.3390/biom9100536 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Bellutti, Laura
Abby, Emilie
Tourpin, Sophie
Messiaen, Sébastien
Moison, Delphine
Trautmann, Emilie
Guerquin, Marie-Justine
Rouiller-Fabre, Virginie
Habert, René
Livera, Gabriel
Divergent Roles of CYP26B1 and Endogenous Retinoic Acid in Mouse Fetal Gonads
title Divergent Roles of CYP26B1 and Endogenous Retinoic Acid in Mouse Fetal Gonads
title_full Divergent Roles of CYP26B1 and Endogenous Retinoic Acid in Mouse Fetal Gonads
title_fullStr Divergent Roles of CYP26B1 and Endogenous Retinoic Acid in Mouse Fetal Gonads
title_full_unstemmed Divergent Roles of CYP26B1 and Endogenous Retinoic Acid in Mouse Fetal Gonads
title_short Divergent Roles of CYP26B1 and Endogenous Retinoic Acid in Mouse Fetal Gonads
title_sort divergent roles of cyp26b1 and endogenous retinoic acid in mouse fetal gonads
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6843241/
https://www.ncbi.nlm.nih.gov/pubmed/31561560
http://dx.doi.org/10.3390/biom9100536
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