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Mechanism Sharing Between Genetic and Gestational Hypoxia-Induced Cardiac Anomalies

Background: Cardiac development is a dynamic process both temporally and spatially. These complex processes are often disturbed and lead to congenital cardiac anomalies that affect approximately 1% of live births. Disease-causing variants in several genetic loci lead to cardiac anomalies, with varia...

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Autores principales: Moumne, Olivia, Chowdhurry, Rajib, Doll, Cassandra, Pereira, Natalia, Hashimi, Mustafa, Grindrod, Tabor, Dollar, James J., Riva, Alberto, Kasahara, Hideko
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6099185/
https://www.ncbi.nlm.nih.gov/pubmed/30151366
http://dx.doi.org/10.3389/fcvm.2018.00100
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author Moumne, Olivia
Chowdhurry, Rajib
Doll, Cassandra
Pereira, Natalia
Hashimi, Mustafa
Grindrod, Tabor
Dollar, James J.
Riva, Alberto
Kasahara, Hideko
author_facet Moumne, Olivia
Chowdhurry, Rajib
Doll, Cassandra
Pereira, Natalia
Hashimi, Mustafa
Grindrod, Tabor
Dollar, James J.
Riva, Alberto
Kasahara, Hideko
author_sort Moumne, Olivia
collection PubMed
description Background: Cardiac development is a dynamic process both temporally and spatially. These complex processes are often disturbed and lead to congenital cardiac anomalies that affect approximately 1% of live births. Disease-causing variants in several genetic loci lead to cardiac anomalies, with variants in transcription factor NKX2-5 gene being one of the largest variants known. Gestational hypoxia, such as seen in high-altitude pregnancy, has been known to affect cardiac development, yet the incidence and underlying mechanisms are largely unknown. Methods and Results: Normal wild-type female mice mated with heterozygous Nkx2-5 mutant males were housed under moderate hypoxia (14% O(2)) or normoxia (20.9% O(2)) conditions from 10.5 days of gestation. Wild-type mice exposed to hypoxia demonstrate excessive trabeculation, ventricular septal defects, irregular morphology of interventricular septum as well as atrial septal abnormalities, which overlap with those seen in heterozygous Nkx2-5 mutant mice. Genome-wide transcriptome done by RNA-seq of a 2-day hypoxic exposure on wild-type embryos revealed abnormal transcriptomes, in which approximately 60% share those from Nkx2-5 mutants without hypoxia. Gestational hypoxia reduced the expression of Nkx2-5 proteins in more than one-half along with a reduction in phosphorylation, suggesting that abnormal Nkx2-5 function is a common mechanism shared between genetic and gestational hypoxia-induced cardiac anomalies, at least at a specific developing stage. Conclusion: The results of our study provide insights into a common molecular mechanism underlying non-genetic and genetic cardiac anomalies.
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spelling pubmed-60991852018-08-27 Mechanism Sharing Between Genetic and Gestational Hypoxia-Induced Cardiac Anomalies Moumne, Olivia Chowdhurry, Rajib Doll, Cassandra Pereira, Natalia Hashimi, Mustafa Grindrod, Tabor Dollar, James J. Riva, Alberto Kasahara, Hideko Front Cardiovasc Med Cardiovascular Medicine Background: Cardiac development is a dynamic process both temporally and spatially. These complex processes are often disturbed and lead to congenital cardiac anomalies that affect approximately 1% of live births. Disease-causing variants in several genetic loci lead to cardiac anomalies, with variants in transcription factor NKX2-5 gene being one of the largest variants known. Gestational hypoxia, such as seen in high-altitude pregnancy, has been known to affect cardiac development, yet the incidence and underlying mechanisms are largely unknown. Methods and Results: Normal wild-type female mice mated with heterozygous Nkx2-5 mutant males were housed under moderate hypoxia (14% O(2)) or normoxia (20.9% O(2)) conditions from 10.5 days of gestation. Wild-type mice exposed to hypoxia demonstrate excessive trabeculation, ventricular septal defects, irregular morphology of interventricular septum as well as atrial septal abnormalities, which overlap with those seen in heterozygous Nkx2-5 mutant mice. Genome-wide transcriptome done by RNA-seq of a 2-day hypoxic exposure on wild-type embryos revealed abnormal transcriptomes, in which approximately 60% share those from Nkx2-5 mutants without hypoxia. Gestational hypoxia reduced the expression of Nkx2-5 proteins in more than one-half along with a reduction in phosphorylation, suggesting that abnormal Nkx2-5 function is a common mechanism shared between genetic and gestational hypoxia-induced cardiac anomalies, at least at a specific developing stage. Conclusion: The results of our study provide insights into a common molecular mechanism underlying non-genetic and genetic cardiac anomalies. Frontiers Media S.A. 2018-08-13 /pmc/articles/PMC6099185/ /pubmed/30151366 http://dx.doi.org/10.3389/fcvm.2018.00100 Text en Copyright © 2018 Moumne, Chowdhurry, Doll, Pereira, Hashimi, Grindrod, Dollar, Riva and Kasahara. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Cardiovascular Medicine
Moumne, Olivia
Chowdhurry, Rajib
Doll, Cassandra
Pereira, Natalia
Hashimi, Mustafa
Grindrod, Tabor
Dollar, James J.
Riva, Alberto
Kasahara, Hideko
Mechanism Sharing Between Genetic and Gestational Hypoxia-Induced Cardiac Anomalies
title Mechanism Sharing Between Genetic and Gestational Hypoxia-Induced Cardiac Anomalies
title_full Mechanism Sharing Between Genetic and Gestational Hypoxia-Induced Cardiac Anomalies
title_fullStr Mechanism Sharing Between Genetic and Gestational Hypoxia-Induced Cardiac Anomalies
title_full_unstemmed Mechanism Sharing Between Genetic and Gestational Hypoxia-Induced Cardiac Anomalies
title_short Mechanism Sharing Between Genetic and Gestational Hypoxia-Induced Cardiac Anomalies
title_sort mechanism sharing between genetic and gestational hypoxia-induced cardiac anomalies
topic Cardiovascular Medicine
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6099185/
https://www.ncbi.nlm.nih.gov/pubmed/30151366
http://dx.doi.org/10.3389/fcvm.2018.00100
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