Cargando…

Dlx1 and Rgs5 in the Ductus Arteriosus: Vessel-Specific Genes Identified by Transcriptional Profiling of Laser-Capture Microdissected Endothelial and Smooth Muscle Cells

Closure of the ductus arteriosus (DA) is a crucial step in the transition from fetal to postnatal life. Patent DA is one of the most common cardiovascular anomalies in children with significant clinical consequences especially in premature infants. We aimed to identify genes that specify the DA in t...

Descripción completa

Detalles Bibliográficos
Autores principales: Bökenkamp, Regina, van Brempt, Ronald, van Munsteren, Jacoba Cornelia, van den Wijngaert, Ilse, de Hoogt, Ronald, Finos, Livio, Goeman, Jelle, Groot, Adriana Cornelia Gittenberger-de, Poelmann, Robert Eugen, Blom, Nicolaas Andreas, DeRuiter, Marcus Cornelis
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3904938/
https://www.ncbi.nlm.nih.gov/pubmed/24489801
http://dx.doi.org/10.1371/journal.pone.0086892
_version_ 1782301263070756864
author Bökenkamp, Regina
van Brempt, Ronald
van Munsteren, Jacoba Cornelia
van den Wijngaert, Ilse
de Hoogt, Ronald
Finos, Livio
Goeman, Jelle
Groot, Adriana Cornelia Gittenberger-de
Poelmann, Robert Eugen
Blom, Nicolaas Andreas
DeRuiter, Marcus Cornelis
author_facet Bökenkamp, Regina
van Brempt, Ronald
van Munsteren, Jacoba Cornelia
van den Wijngaert, Ilse
de Hoogt, Ronald
Finos, Livio
Goeman, Jelle
Groot, Adriana Cornelia Gittenberger-de
Poelmann, Robert Eugen
Blom, Nicolaas Andreas
DeRuiter, Marcus Cornelis
author_sort Bökenkamp, Regina
collection PubMed
description Closure of the ductus arteriosus (DA) is a crucial step in the transition from fetal to postnatal life. Patent DA is one of the most common cardiovascular anomalies in children with significant clinical consequences especially in premature infants. We aimed to identify genes that specify the DA in the fetus and differentiate it from the aorta. Comparative microarray analysis of laser-captured microdissected endothelial (ECs) and vascular smooth muscle cells (SMCs) from the DA and aorta of fetal rats (embryonic day 18 and 21) identified vessel-specific transcriptional profiles. We found a strong age-dependency of gene expression. Among the genes that were upregulated in the DA the regulator of the G-protein coupled receptor 5 (Rgs5) and the transcription factor distal-less homeobox 1 (Dlx1) exhibited the highest and most significant level of differential expression. The aorta showed a significant preferential expression of the Purkinje cell protein 4 (Pcp4) gene. The results of the microarray analysis were validated by real-time quantitative PCR and immunohistochemistry. Our study confirms vessel-specific transcriptional profiles in ECs and SMCs of rat DA and aorta. Rgs5 and Dlx1 represent novel molecular targets for the regulation of DA maturation and closure.
format Online
Article
Text
id pubmed-3904938
institution National Center for Biotechnology Information
language English
publishDate 2014
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-39049382014-01-31 Dlx1 and Rgs5 in the Ductus Arteriosus: Vessel-Specific Genes Identified by Transcriptional Profiling of Laser-Capture Microdissected Endothelial and Smooth Muscle Cells Bökenkamp, Regina van Brempt, Ronald van Munsteren, Jacoba Cornelia van den Wijngaert, Ilse de Hoogt, Ronald Finos, Livio Goeman, Jelle Groot, Adriana Cornelia Gittenberger-de Poelmann, Robert Eugen Blom, Nicolaas Andreas DeRuiter, Marcus Cornelis PLoS One Research Article Closure of the ductus arteriosus (DA) is a crucial step in the transition from fetal to postnatal life. Patent DA is one of the most common cardiovascular anomalies in children with significant clinical consequences especially in premature infants. We aimed to identify genes that specify the DA in the fetus and differentiate it from the aorta. Comparative microarray analysis of laser-captured microdissected endothelial (ECs) and vascular smooth muscle cells (SMCs) from the DA and aorta of fetal rats (embryonic day 18 and 21) identified vessel-specific transcriptional profiles. We found a strong age-dependency of gene expression. Among the genes that were upregulated in the DA the regulator of the G-protein coupled receptor 5 (Rgs5) and the transcription factor distal-less homeobox 1 (Dlx1) exhibited the highest and most significant level of differential expression. The aorta showed a significant preferential expression of the Purkinje cell protein 4 (Pcp4) gene. The results of the microarray analysis were validated by real-time quantitative PCR and immunohistochemistry. Our study confirms vessel-specific transcriptional profiles in ECs and SMCs of rat DA and aorta. Rgs5 and Dlx1 represent novel molecular targets for the regulation of DA maturation and closure. Public Library of Science 2014-01-28 /pmc/articles/PMC3904938/ /pubmed/24489801 http://dx.doi.org/10.1371/journal.pone.0086892 Text en © 2014 Bökenkamp et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Bökenkamp, Regina
van Brempt, Ronald
van Munsteren, Jacoba Cornelia
van den Wijngaert, Ilse
de Hoogt, Ronald
Finos, Livio
Goeman, Jelle
Groot, Adriana Cornelia Gittenberger-de
Poelmann, Robert Eugen
Blom, Nicolaas Andreas
DeRuiter, Marcus Cornelis
Dlx1 and Rgs5 in the Ductus Arteriosus: Vessel-Specific Genes Identified by Transcriptional Profiling of Laser-Capture Microdissected Endothelial and Smooth Muscle Cells
title Dlx1 and Rgs5 in the Ductus Arteriosus: Vessel-Specific Genes Identified by Transcriptional Profiling of Laser-Capture Microdissected Endothelial and Smooth Muscle Cells
title_full Dlx1 and Rgs5 in the Ductus Arteriosus: Vessel-Specific Genes Identified by Transcriptional Profiling of Laser-Capture Microdissected Endothelial and Smooth Muscle Cells
title_fullStr Dlx1 and Rgs5 in the Ductus Arteriosus: Vessel-Specific Genes Identified by Transcriptional Profiling of Laser-Capture Microdissected Endothelial and Smooth Muscle Cells
title_full_unstemmed Dlx1 and Rgs5 in the Ductus Arteriosus: Vessel-Specific Genes Identified by Transcriptional Profiling of Laser-Capture Microdissected Endothelial and Smooth Muscle Cells
title_short Dlx1 and Rgs5 in the Ductus Arteriosus: Vessel-Specific Genes Identified by Transcriptional Profiling of Laser-Capture Microdissected Endothelial and Smooth Muscle Cells
title_sort dlx1 and rgs5 in the ductus arteriosus: vessel-specific genes identified by transcriptional profiling of laser-capture microdissected endothelial and smooth muscle cells
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3904938/
https://www.ncbi.nlm.nih.gov/pubmed/24489801
http://dx.doi.org/10.1371/journal.pone.0086892
work_keys_str_mv AT bokenkampregina dlx1andrgs5intheductusarteriosusvesselspecificgenesidentifiedbytranscriptionalprofilingoflasercapturemicrodissectedendothelialandsmoothmusclecells
AT vanbremptronald dlx1andrgs5intheductusarteriosusvesselspecificgenesidentifiedbytranscriptionalprofilingoflasercapturemicrodissectedendothelialandsmoothmusclecells
AT vanmunsterenjacobacornelia dlx1andrgs5intheductusarteriosusvesselspecificgenesidentifiedbytranscriptionalprofilingoflasercapturemicrodissectedendothelialandsmoothmusclecells
AT vandenwijngaertilse dlx1andrgs5intheductusarteriosusvesselspecificgenesidentifiedbytranscriptionalprofilingoflasercapturemicrodissectedendothelialandsmoothmusclecells
AT dehoogtronald dlx1andrgs5intheductusarteriosusvesselspecificgenesidentifiedbytranscriptionalprofilingoflasercapturemicrodissectedendothelialandsmoothmusclecells
AT finoslivio dlx1andrgs5intheductusarteriosusvesselspecificgenesidentifiedbytranscriptionalprofilingoflasercapturemicrodissectedendothelialandsmoothmusclecells
AT goemanjelle dlx1andrgs5intheductusarteriosusvesselspecificgenesidentifiedbytranscriptionalprofilingoflasercapturemicrodissectedendothelialandsmoothmusclecells
AT grootadrianacorneliagittenbergerde dlx1andrgs5intheductusarteriosusvesselspecificgenesidentifiedbytranscriptionalprofilingoflasercapturemicrodissectedendothelialandsmoothmusclecells
AT poelmannroberteugen dlx1andrgs5intheductusarteriosusvesselspecificgenesidentifiedbytranscriptionalprofilingoflasercapturemicrodissectedendothelialandsmoothmusclecells
AT blomnicolaasandreas dlx1andrgs5intheductusarteriosusvesselspecificgenesidentifiedbytranscriptionalprofilingoflasercapturemicrodissectedendothelialandsmoothmusclecells
AT deruitermarcuscornelis dlx1andrgs5intheductusarteriosusvesselspecificgenesidentifiedbytranscriptionalprofilingoflasercapturemicrodissectedendothelialandsmoothmusclecells