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miRNAs, target genes expression and morphological analysis on the heart in gestational protein-restricted offspring

Gestational protein restriction was associated with low birth weight, hypertension and higher prevalence of cardiac disorders in adults. Several mechanisms, including epigenetics, could be related with the cardiovascular phenotype on protein-restricted offspring. Thus, we investigated the morphologi...

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Autores principales: Assalin, Heloisa Balan, Gontijo, José Antonio Rocha, Boer, Patrícia Aline
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6507319/
https://www.ncbi.nlm.nih.gov/pubmed/31034522
http://dx.doi.org/10.1371/journal.pone.0210454
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author Assalin, Heloisa Balan
Gontijo, José Antonio Rocha
Boer, Patrícia Aline
author_facet Assalin, Heloisa Balan
Gontijo, José Antonio Rocha
Boer, Patrícia Aline
author_sort Assalin, Heloisa Balan
collection PubMed
description Gestational protein restriction was associated with low birth weight, hypertension and higher prevalence of cardiac disorders in adults. Several mechanisms, including epigenetics, could be related with the cardiovascular phenotype on protein-restricted offspring. Thus, we investigated the morphological cardiac effects of gestational protein restriction and left ventricle miRNAs and target genes expression pattern in both 12-day and 16-week old gestational protein-restricted male offspring. Pregnant Wistar rats were allocated into two groups, according to protein supply during pregnancy: NP (normal protein diet- 17%) or LP (low protein diet—6%). Dams on the gestational protein-restricted diet had lower body weight gain and higher food intake. Gestational protein-restricted offspring had low birth weight, followed by rapidly body weight recovery, hypertension, and increased myocytes cross-sectional area and collagen fraction at 16-week old age. At 12-days old, miR-184, miR-192, miR-376c, miR-380-3p, miR-380-5p, miR-451, and miR-582-3p had increased expression, and miR-547 and miR-743a had decreased expression in the gestational protein-restricted left ventricle. At 16-week old, let-7b, miR-125a-3p, miR-142-3p, miR-182 and miR-188-5p had increased expression and let-7g, miR-107, miR-127, miR-181a, miR-181c, miR-184, miR-324-5p, miR-383, miR-423-5p and miR-484 had decreased expression in gestational protein-restricted left ventricle. Target predicted gene expression analysis showed higher expression of Dnmt3a, Oxct1, Rictor and Trps1 and lower expression of Bbs1 and Calml3 in 12-day old protein-restricted offspring. 16-week old protein-restricted offspring had higher expression of Adrbk1, Bbs1, Dnmt3a, Gpr22, Inppl1, and Oxct1 genes. In conclusion, gestational protein restriction was related to offspring low birth weight, increased systolic blood pressure and morphological heart alterations that could be related to early heart miRNA expression changes that perpetuate into adulthood and which are associated with the regulation of essential genes involved in cardiovascular development, heart morphology, function, and metabolism.
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spelling pubmed-65073192019-05-31 miRNAs, target genes expression and morphological analysis on the heart in gestational protein-restricted offspring Assalin, Heloisa Balan Gontijo, José Antonio Rocha Boer, Patrícia Aline PLoS One Research Article Gestational protein restriction was associated with low birth weight, hypertension and higher prevalence of cardiac disorders in adults. Several mechanisms, including epigenetics, could be related with the cardiovascular phenotype on protein-restricted offspring. Thus, we investigated the morphological cardiac effects of gestational protein restriction and left ventricle miRNAs and target genes expression pattern in both 12-day and 16-week old gestational protein-restricted male offspring. Pregnant Wistar rats were allocated into two groups, according to protein supply during pregnancy: NP (normal protein diet- 17%) or LP (low protein diet—6%). Dams on the gestational protein-restricted diet had lower body weight gain and higher food intake. Gestational protein-restricted offspring had low birth weight, followed by rapidly body weight recovery, hypertension, and increased myocytes cross-sectional area and collagen fraction at 16-week old age. At 12-days old, miR-184, miR-192, miR-376c, miR-380-3p, miR-380-5p, miR-451, and miR-582-3p had increased expression, and miR-547 and miR-743a had decreased expression in the gestational protein-restricted left ventricle. At 16-week old, let-7b, miR-125a-3p, miR-142-3p, miR-182 and miR-188-5p had increased expression and let-7g, miR-107, miR-127, miR-181a, miR-181c, miR-184, miR-324-5p, miR-383, miR-423-5p and miR-484 had decreased expression in gestational protein-restricted left ventricle. Target predicted gene expression analysis showed higher expression of Dnmt3a, Oxct1, Rictor and Trps1 and lower expression of Bbs1 and Calml3 in 12-day old protein-restricted offspring. 16-week old protein-restricted offspring had higher expression of Adrbk1, Bbs1, Dnmt3a, Gpr22, Inppl1, and Oxct1 genes. In conclusion, gestational protein restriction was related to offspring low birth weight, increased systolic blood pressure and morphological heart alterations that could be related to early heart miRNA expression changes that perpetuate into adulthood and which are associated with the regulation of essential genes involved in cardiovascular development, heart morphology, function, and metabolism. Public Library of Science 2019-04-29 /pmc/articles/PMC6507319/ /pubmed/31034522 http://dx.doi.org/10.1371/journal.pone.0210454 Text en © 2019 Assalin 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 (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Assalin, Heloisa Balan
Gontijo, José Antonio Rocha
Boer, Patrícia Aline
miRNAs, target genes expression and morphological analysis on the heart in gestational protein-restricted offspring
title miRNAs, target genes expression and morphological analysis on the heart in gestational protein-restricted offspring
title_full miRNAs, target genes expression and morphological analysis on the heart in gestational protein-restricted offspring
title_fullStr miRNAs, target genes expression and morphological analysis on the heart in gestational protein-restricted offspring
title_full_unstemmed miRNAs, target genes expression and morphological analysis on the heart in gestational protein-restricted offspring
title_short miRNAs, target genes expression and morphological analysis on the heart in gestational protein-restricted offspring
title_sort mirnas, target genes expression and morphological analysis on the heart in gestational protein-restricted offspring
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6507319/
https://www.ncbi.nlm.nih.gov/pubmed/31034522
http://dx.doi.org/10.1371/journal.pone.0210454
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