Association of FOXD1 variants with adverse pregnancy outcomes in mice and humans

Recurrent spontaneous abortion (RSA) is a common cause of infertility, but previous attempts at identifying RSA causative genes have been relatively unsuccessful. Such failure to describe RSA aetiological genes might be explained by the fact that reproductive phenotypes should be considered as quant...

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Main Authors: Paul Laissue, Besma Lakhal, Magalie Vatin, Frank Batista, Gaëtan Burgio, Eric Mercier, Esther Dos Santos, Christophe Buffat, Diana Carolina Sierra-Diaz, Gilles Renault, Xavier Montagutelli, Jane Salmon, Philippe Monget, Reiner A. Veitia, Céline Méhats, Marc Fellous, Jean-Christophe Gris, Julie Cocquet, Daniel Vaiman
Format: Article
Language:English
Published: The Royal Society 2016-01-01
Series:Open Biology
Subjects:
Online Access:https://royalsocietypublishing.org/doi/pdf/10.1098/rsob.160109
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spelling doaj-59cbc1af7cea42bd92495a8e90fb08ff2020-11-25T03:23:26ZengThe Royal SocietyOpen Biology2046-24412016-01-0161010.1098/rsob.160109160109Association of FOXD1 variants with adverse pregnancy outcomes in mice and humansPaul LaissueBesma LakhalMagalie VatinFrank BatistaGaëtan BurgioEric MercierEsther Dos SantosChristophe BuffatDiana Carolina Sierra-DiazGilles RenaultXavier MontagutelliJane SalmonPhilippe MongetReiner A. VeitiaCéline MéhatsMarc FellousJean-Christophe GrisJulie CocquetDaniel VaimanRecurrent spontaneous abortion (RSA) is a common cause of infertility, but previous attempts at identifying RSA causative genes have been relatively unsuccessful. Such failure to describe RSA aetiological genes might be explained by the fact that reproductive phenotypes should be considered as quantitative traits resulting from the intricate interaction of numerous genetic, epigenetic and environmental factors. Here, we studied an interspecific recombinant congenic strain (IRCS) of Mus musculus from the C57BL6/J strain of mice harbouring an approximate 5 Mb DNA fragment from chromosome 13 from Mus spretus mice (66H-MMU13 strain), with a high rate of embryonic resorption (ER). Transcriptome analyses of endometrial and placental tissues from these mice showed a deregulation of many genes associated with the coagulation and inflammatory response pathways. Bioinformatics approaches led us to select Foxd1 as a candidate gene potentially related to ER and RSA. Sequencing analysis of Foxd1 in the 66H-MMU13 strain, and in 556 women affected by RSA and 271 controls revealed non-synonymous sequence variants. In vitro assays revealed that some led to perturbations in FOXD1 transactivation properties on promoters of genes having key roles during implantation/placentation, suggesting a role of this gene in mammalian implantation processes.https://royalsocietypublishing.org/doi/pdf/10.1098/rsob.160109recurrent spontaneous abortionimplantationinterspecific recombinant congenic mice
collection DOAJ
language English
format Article
sources DOAJ
author Paul Laissue
Besma Lakhal
Magalie Vatin
Frank Batista
Gaëtan Burgio
Eric Mercier
Esther Dos Santos
Christophe Buffat
Diana Carolina Sierra-Diaz
Gilles Renault
Xavier Montagutelli
Jane Salmon
Philippe Monget
Reiner A. Veitia
Céline Méhats
Marc Fellous
Jean-Christophe Gris
Julie Cocquet
Daniel Vaiman
spellingShingle Paul Laissue
Besma Lakhal
Magalie Vatin
Frank Batista
Gaëtan Burgio
Eric Mercier
Esther Dos Santos
Christophe Buffat
Diana Carolina Sierra-Diaz
Gilles Renault
Xavier Montagutelli
Jane Salmon
Philippe Monget
Reiner A. Veitia
Céline Méhats
Marc Fellous
Jean-Christophe Gris
Julie Cocquet
Daniel Vaiman
Association of FOXD1 variants with adverse pregnancy outcomes in mice and humans
Open Biology
recurrent spontaneous abortion
implantation
interspecific recombinant congenic mice
author_facet Paul Laissue
Besma Lakhal
Magalie Vatin
Frank Batista
Gaëtan Burgio
Eric Mercier
Esther Dos Santos
Christophe Buffat
Diana Carolina Sierra-Diaz
Gilles Renault
Xavier Montagutelli
Jane Salmon
Philippe Monget
Reiner A. Veitia
Céline Méhats
Marc Fellous
Jean-Christophe Gris
Julie Cocquet
Daniel Vaiman
author_sort Paul Laissue
title Association of FOXD1 variants with adverse pregnancy outcomes in mice and humans
title_short Association of FOXD1 variants with adverse pregnancy outcomes in mice and humans
title_full Association of FOXD1 variants with adverse pregnancy outcomes in mice and humans
title_fullStr Association of FOXD1 variants with adverse pregnancy outcomes in mice and humans
title_full_unstemmed Association of FOXD1 variants with adverse pregnancy outcomes in mice and humans
title_sort association of foxd1 variants with adverse pregnancy outcomes in mice and humans
publisher The Royal Society
series Open Biology
issn 2046-2441
publishDate 2016-01-01
description Recurrent spontaneous abortion (RSA) is a common cause of infertility, but previous attempts at identifying RSA causative genes have been relatively unsuccessful. Such failure to describe RSA aetiological genes might be explained by the fact that reproductive phenotypes should be considered as quantitative traits resulting from the intricate interaction of numerous genetic, epigenetic and environmental factors. Here, we studied an interspecific recombinant congenic strain (IRCS) of Mus musculus from the C57BL6/J strain of mice harbouring an approximate 5 Mb DNA fragment from chromosome 13 from Mus spretus mice (66H-MMU13 strain), with a high rate of embryonic resorption (ER). Transcriptome analyses of endometrial and placental tissues from these mice showed a deregulation of many genes associated with the coagulation and inflammatory response pathways. Bioinformatics approaches led us to select Foxd1 as a candidate gene potentially related to ER and RSA. Sequencing analysis of Foxd1 in the 66H-MMU13 strain, and in 556 women affected by RSA and 271 controls revealed non-synonymous sequence variants. In vitro assays revealed that some led to perturbations in FOXD1 transactivation properties on promoters of genes having key roles during implantation/placentation, suggesting a role of this gene in mammalian implantation processes.
topic recurrent spontaneous abortion
implantation
interspecific recombinant congenic mice
url https://royalsocietypublishing.org/doi/pdf/10.1098/rsob.160109
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