Cargando…

Perinatal Exogenous Nitric Oxide in Fawn-Hooded Hypertensive Rats Reduces Renal Ribosomal Biogenesis in Early Life

Nitric oxide (NO) is known to depress ribosome biogenesis in vitro. In this study we analyzed the influence of exogenous NO on ribosome biogenesis in vivo using a proven antihypertensive model of perinatal NO administration in genetically hypertensive rats. Fawn-hooded hypertensive rat (FHH) dams we...

Descripción completa

Detalles Bibliográficos
Autores principales: Wesseling, Sebastiaan, Essers, Paul B., Koeners, Maarten P., Pereboom, Tamara C., Braam, Branko, van Faassen, Ernst E., MacInnes, Alyson W., Joles, Jaap A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Research Foundation 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3268605/
https://www.ncbi.nlm.nih.gov/pubmed/22303348
http://dx.doi.org/10.3389/fgene.2011.00052
_version_ 1782222389215494144
author Wesseling, Sebastiaan
Essers, Paul B.
Koeners, Maarten P.
Pereboom, Tamara C.
Braam, Branko
van Faassen, Ernst E.
MacInnes, Alyson W.
Joles, Jaap A.
author_facet Wesseling, Sebastiaan
Essers, Paul B.
Koeners, Maarten P.
Pereboom, Tamara C.
Braam, Branko
van Faassen, Ernst E.
MacInnes, Alyson W.
Joles, Jaap A.
author_sort Wesseling, Sebastiaan
collection PubMed
description Nitric oxide (NO) is known to depress ribosome biogenesis in vitro. In this study we analyzed the influence of exogenous NO on ribosome biogenesis in vivo using a proven antihypertensive model of perinatal NO administration in genetically hypertensive rats. Fawn-hooded hypertensive rat (FHH) dams were supplied with the NO-donor molsidomine in drinking water from 2 weeks before to 4 weeks after birth, and the kidneys were subsequently collected from 2 day, 2 week, and 9 to 10-month-old adult offspring. Although the NO-donor increased maternal NO metabolite excretion, the NO status of juvenile renal (and liver) tissue was unchanged as assayed by EPR spectroscopy of NO trapped with iron-dithiocarbamate complexes. Nevertheless, microarray analysis revealed marked differential up-regulation of renal ribosomal protein genes at 2 days and down-regulation at 2 weeks and in adult males. Such differential regulation of renal ribosomal protein genes was not observed in females. These changes were confirmed in males at 2 weeks by expression analysis of renal ribosomal protein L36a and by polysome profiling, which also revealed a down-regulation of ribosomes in females at that age. However, renal polysome profiles returned to normal in adults after early exposure to molsidomine. No direct effects of molsidomine were observed on cellular proliferation in kidneys at any age, and the changes induced by molsidomine in renal polysome profiles at 2 weeks were absent in the livers of the same rats. Our results suggest that the previously found prolonged antihypertensive effects of perinatal NO administration may be due to epigenetically programmed alterations in renal ribosome biogenesis during a critical fetal period of renal development, and provide a salient example of a drug-induced reduction of ribosome biogenesis that is accompanied by a beneficial long-term health effect in both males and females.
format Online
Article
Text
id pubmed-3268605
institution National Center for Biotechnology Information
language English
publishDate 2011
publisher Frontiers Research Foundation
record_format MEDLINE/PubMed
spelling pubmed-32686052012-02-02 Perinatal Exogenous Nitric Oxide in Fawn-Hooded Hypertensive Rats Reduces Renal Ribosomal Biogenesis in Early Life Wesseling, Sebastiaan Essers, Paul B. Koeners, Maarten P. Pereboom, Tamara C. Braam, Branko van Faassen, Ernst E. MacInnes, Alyson W. Joles, Jaap A. Front Genet Genetics Nitric oxide (NO) is known to depress ribosome biogenesis in vitro. In this study we analyzed the influence of exogenous NO on ribosome biogenesis in vivo using a proven antihypertensive model of perinatal NO administration in genetically hypertensive rats. Fawn-hooded hypertensive rat (FHH) dams were supplied with the NO-donor molsidomine in drinking water from 2 weeks before to 4 weeks after birth, and the kidneys were subsequently collected from 2 day, 2 week, and 9 to 10-month-old adult offspring. Although the NO-donor increased maternal NO metabolite excretion, the NO status of juvenile renal (and liver) tissue was unchanged as assayed by EPR spectroscopy of NO trapped with iron-dithiocarbamate complexes. Nevertheless, microarray analysis revealed marked differential up-regulation of renal ribosomal protein genes at 2 days and down-regulation at 2 weeks and in adult males. Such differential regulation of renal ribosomal protein genes was not observed in females. These changes were confirmed in males at 2 weeks by expression analysis of renal ribosomal protein L36a and by polysome profiling, which also revealed a down-regulation of ribosomes in females at that age. However, renal polysome profiles returned to normal in adults after early exposure to molsidomine. No direct effects of molsidomine were observed on cellular proliferation in kidneys at any age, and the changes induced by molsidomine in renal polysome profiles at 2 weeks were absent in the livers of the same rats. Our results suggest that the previously found prolonged antihypertensive effects of perinatal NO administration may be due to epigenetically programmed alterations in renal ribosome biogenesis during a critical fetal period of renal development, and provide a salient example of a drug-induced reduction of ribosome biogenesis that is accompanied by a beneficial long-term health effect in both males and females. Frontiers Research Foundation 2011-08-29 /pmc/articles/PMC3268605/ /pubmed/22303348 http://dx.doi.org/10.3389/fgene.2011.00052 Text en Copyright © 2011 Wesseling, Essers, Koeners, Pereboom, Braam, van Faassen, MacInnes and Joles. http://www.frontiersin.org/licenseagreement This is an open-access article subject to a non-exclusive license between the authors and Frontiers Media SA, which permits use, distribution and reproduction in other forums, provided the original authors and source are credited and other Frontiers conditions are complied with.
spellingShingle Genetics
Wesseling, Sebastiaan
Essers, Paul B.
Koeners, Maarten P.
Pereboom, Tamara C.
Braam, Branko
van Faassen, Ernst E.
MacInnes, Alyson W.
Joles, Jaap A.
Perinatal Exogenous Nitric Oxide in Fawn-Hooded Hypertensive Rats Reduces Renal Ribosomal Biogenesis in Early Life
title Perinatal Exogenous Nitric Oxide in Fawn-Hooded Hypertensive Rats Reduces Renal Ribosomal Biogenesis in Early Life
title_full Perinatal Exogenous Nitric Oxide in Fawn-Hooded Hypertensive Rats Reduces Renal Ribosomal Biogenesis in Early Life
title_fullStr Perinatal Exogenous Nitric Oxide in Fawn-Hooded Hypertensive Rats Reduces Renal Ribosomal Biogenesis in Early Life
title_full_unstemmed Perinatal Exogenous Nitric Oxide in Fawn-Hooded Hypertensive Rats Reduces Renal Ribosomal Biogenesis in Early Life
title_short Perinatal Exogenous Nitric Oxide in Fawn-Hooded Hypertensive Rats Reduces Renal Ribosomal Biogenesis in Early Life
title_sort perinatal exogenous nitric oxide in fawn-hooded hypertensive rats reduces renal ribosomal biogenesis in early life
topic Genetics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3268605/
https://www.ncbi.nlm.nih.gov/pubmed/22303348
http://dx.doi.org/10.3389/fgene.2011.00052
work_keys_str_mv AT wesselingsebastiaan perinatalexogenousnitricoxideinfawnhoodedhypertensiveratsreducesrenalribosomalbiogenesisinearlylife
AT esserspaulb perinatalexogenousnitricoxideinfawnhoodedhypertensiveratsreducesrenalribosomalbiogenesisinearlylife
AT koenersmaartenp perinatalexogenousnitricoxideinfawnhoodedhypertensiveratsreducesrenalribosomalbiogenesisinearlylife
AT pereboomtamarac perinatalexogenousnitricoxideinfawnhoodedhypertensiveratsreducesrenalribosomalbiogenesisinearlylife
AT braambranko perinatalexogenousnitricoxideinfawnhoodedhypertensiveratsreducesrenalribosomalbiogenesisinearlylife
AT vanfaassenernste perinatalexogenousnitricoxideinfawnhoodedhypertensiveratsreducesrenalribosomalbiogenesisinearlylife
AT macinnesalysonw perinatalexogenousnitricoxideinfawnhoodedhypertensiveratsreducesrenalribosomalbiogenesisinearlylife
AT jolesjaapa perinatalexogenousnitricoxideinfawnhoodedhypertensiveratsreducesrenalribosomalbiogenesisinearlylife