Cargando…

Mechanisms Involving Ang II and MAPK/ERK1/2 Signaling Pathways Underlie Cardiac and Renal Alterations during Chronic Undernutrition

BACKGROUND: Several studies have correlated protein restriction associated with other nutritional deficiencies with the development of cardiovascular and renal diseases. The driving hypothesis for this study was that Ang II signaling pathways in the heart and kidney are affected by chronic protein,...

Descripción completa

Detalles Bibliográficos
Autores principales: Silva, Paulo A., Monnerat-Cahli, Gustavo, Pereira-Acácio, Amaury, Luzardo, Ricardo, Sampaio, Luzia S., Luna-Leite, Marcia A., Lara, Lucienne S., Einicker-Lamas, Marcelo, Panizzutti, Rogério, Madeira, Caroline, Vieira-Filho, Leucio D., Castro-Chaves, Carmen, Ribeiro, Valdilene S., Paixão, Ana D. O., Medei, Emiliano, Vieyra, Adalberto
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4077653/
https://www.ncbi.nlm.nih.gov/pubmed/24983243
http://dx.doi.org/10.1371/journal.pone.0100410
_version_ 1782323629488340992
author Silva, Paulo A.
Monnerat-Cahli, Gustavo
Pereira-Acácio, Amaury
Luzardo, Ricardo
Sampaio, Luzia S.
Luna-Leite, Marcia A.
Lara, Lucienne S.
Einicker-Lamas, Marcelo
Panizzutti, Rogério
Madeira, Caroline
Vieira-Filho, Leucio D.
Castro-Chaves, Carmen
Ribeiro, Valdilene S.
Paixão, Ana D. O.
Medei, Emiliano
Vieyra, Adalberto
author_facet Silva, Paulo A.
Monnerat-Cahli, Gustavo
Pereira-Acácio, Amaury
Luzardo, Ricardo
Sampaio, Luzia S.
Luna-Leite, Marcia A.
Lara, Lucienne S.
Einicker-Lamas, Marcelo
Panizzutti, Rogério
Madeira, Caroline
Vieira-Filho, Leucio D.
Castro-Chaves, Carmen
Ribeiro, Valdilene S.
Paixão, Ana D. O.
Medei, Emiliano
Vieyra, Adalberto
author_sort Silva, Paulo A.
collection PubMed
description BACKGROUND: Several studies have correlated protein restriction associated with other nutritional deficiencies with the development of cardiovascular and renal diseases. The driving hypothesis for this study was that Ang II signaling pathways in the heart and kidney are affected by chronic protein, mineral and vitamin restriction. METHODOLOGY/PRINCIPAL FINDINGS: Wistar rats aged 90 days were fed from weaning with either a control or a deficient diet that mimics those used in impoverished regions worldwide. Such restriction simultaneously increased ouabain-insensitive Na(+)-ATPase and decreased (Na(+)+K(+))ATPase activity in the same proportion in cardiomyocytes and proximal tubule cells. Type 1 angiotensin II receptor (AT(1)R) was downregulated by that restriction in both organs, whereas AT(2)R decreased only in the kidney. The PKC/PKA ratio increased in both tissues and returned to normal values in rats receiving Losartan daily from weaning. Inhibition of the MAPK pathway restored Na(+)-ATPase activity in both organs. The undernourished rats presented expanded plasma volume, increased heart rate, cardiac hypertrophy, and elevated systolic pressure, which also returned to control levels with Losartan. Such restriction led to electrical cardiac remodeling represented by prolonged ventricular repolarization parameters, induced triggered activity, early after-depolarization and delayed after-depolarization, which were also prevented by Losartan. CONCLUSION/SIGNIFICANCE: The mechanisms responsible for these alterations are underpinned by an imbalance in the PKC- and PKA-mediated pathways, with participation of angiotensin receptors and by activation of the MAPK/ERK1/2 pathway. These cellular and molecular alterations culminate in cardiac electric remodeling and in the onset of hypertension in adulthood.
format Online
Article
Text
id pubmed-4077653
institution National Center for Biotechnology Information
language English
publishDate 2014
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-40776532014-07-03 Mechanisms Involving Ang II and MAPK/ERK1/2 Signaling Pathways Underlie Cardiac and Renal Alterations during Chronic Undernutrition Silva, Paulo A. Monnerat-Cahli, Gustavo Pereira-Acácio, Amaury Luzardo, Ricardo Sampaio, Luzia S. Luna-Leite, Marcia A. Lara, Lucienne S. Einicker-Lamas, Marcelo Panizzutti, Rogério Madeira, Caroline Vieira-Filho, Leucio D. Castro-Chaves, Carmen Ribeiro, Valdilene S. Paixão, Ana D. O. Medei, Emiliano Vieyra, Adalberto PLoS One Research Article BACKGROUND: Several studies have correlated protein restriction associated with other nutritional deficiencies with the development of cardiovascular and renal diseases. The driving hypothesis for this study was that Ang II signaling pathways in the heart and kidney are affected by chronic protein, mineral and vitamin restriction. METHODOLOGY/PRINCIPAL FINDINGS: Wistar rats aged 90 days were fed from weaning with either a control or a deficient diet that mimics those used in impoverished regions worldwide. Such restriction simultaneously increased ouabain-insensitive Na(+)-ATPase and decreased (Na(+)+K(+))ATPase activity in the same proportion in cardiomyocytes and proximal tubule cells. Type 1 angiotensin II receptor (AT(1)R) was downregulated by that restriction in both organs, whereas AT(2)R decreased only in the kidney. The PKC/PKA ratio increased in both tissues and returned to normal values in rats receiving Losartan daily from weaning. Inhibition of the MAPK pathway restored Na(+)-ATPase activity in both organs. The undernourished rats presented expanded plasma volume, increased heart rate, cardiac hypertrophy, and elevated systolic pressure, which also returned to control levels with Losartan. Such restriction led to electrical cardiac remodeling represented by prolonged ventricular repolarization parameters, induced triggered activity, early after-depolarization and delayed after-depolarization, which were also prevented by Losartan. CONCLUSION/SIGNIFICANCE: The mechanisms responsible for these alterations are underpinned by an imbalance in the PKC- and PKA-mediated pathways, with participation of angiotensin receptors and by activation of the MAPK/ERK1/2 pathway. These cellular and molecular alterations culminate in cardiac electric remodeling and in the onset of hypertension in adulthood. Public Library of Science 2014-07-01 /pmc/articles/PMC4077653/ /pubmed/24983243 http://dx.doi.org/10.1371/journal.pone.0100410 Text en © 2014 Silva 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
Silva, Paulo A.
Monnerat-Cahli, Gustavo
Pereira-Acácio, Amaury
Luzardo, Ricardo
Sampaio, Luzia S.
Luna-Leite, Marcia A.
Lara, Lucienne S.
Einicker-Lamas, Marcelo
Panizzutti, Rogério
Madeira, Caroline
Vieira-Filho, Leucio D.
Castro-Chaves, Carmen
Ribeiro, Valdilene S.
Paixão, Ana D. O.
Medei, Emiliano
Vieyra, Adalberto
Mechanisms Involving Ang II and MAPK/ERK1/2 Signaling Pathways Underlie Cardiac and Renal Alterations during Chronic Undernutrition
title Mechanisms Involving Ang II and MAPK/ERK1/2 Signaling Pathways Underlie Cardiac and Renal Alterations during Chronic Undernutrition
title_full Mechanisms Involving Ang II and MAPK/ERK1/2 Signaling Pathways Underlie Cardiac and Renal Alterations during Chronic Undernutrition
title_fullStr Mechanisms Involving Ang II and MAPK/ERK1/2 Signaling Pathways Underlie Cardiac and Renal Alterations during Chronic Undernutrition
title_full_unstemmed Mechanisms Involving Ang II and MAPK/ERK1/2 Signaling Pathways Underlie Cardiac and Renal Alterations during Chronic Undernutrition
title_short Mechanisms Involving Ang II and MAPK/ERK1/2 Signaling Pathways Underlie Cardiac and Renal Alterations during Chronic Undernutrition
title_sort mechanisms involving ang ii and mapk/erk1/2 signaling pathways underlie cardiac and renal alterations during chronic undernutrition
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4077653/
https://www.ncbi.nlm.nih.gov/pubmed/24983243
http://dx.doi.org/10.1371/journal.pone.0100410
work_keys_str_mv AT silvapauloa mechanismsinvolvingangiiandmapkerk12signalingpathwaysunderliecardiacandrenalalterationsduringchronicundernutrition
AT monneratcahligustavo mechanismsinvolvingangiiandmapkerk12signalingpathwaysunderliecardiacandrenalalterationsduringchronicundernutrition
AT pereiraacacioamaury mechanismsinvolvingangiiandmapkerk12signalingpathwaysunderliecardiacandrenalalterationsduringchronicundernutrition
AT luzardoricardo mechanismsinvolvingangiiandmapkerk12signalingpathwaysunderliecardiacandrenalalterationsduringchronicundernutrition
AT sampaioluzias mechanismsinvolvingangiiandmapkerk12signalingpathwaysunderliecardiacandrenalalterationsduringchronicundernutrition
AT lunaleitemarciaa mechanismsinvolvingangiiandmapkerk12signalingpathwaysunderliecardiacandrenalalterationsduringchronicundernutrition
AT laraluciennes mechanismsinvolvingangiiandmapkerk12signalingpathwaysunderliecardiacandrenalalterationsduringchronicundernutrition
AT einickerlamasmarcelo mechanismsinvolvingangiiandmapkerk12signalingpathwaysunderliecardiacandrenalalterationsduringchronicundernutrition
AT panizzuttirogerio mechanismsinvolvingangiiandmapkerk12signalingpathwaysunderliecardiacandrenalalterationsduringchronicundernutrition
AT madeiracaroline mechanismsinvolvingangiiandmapkerk12signalingpathwaysunderliecardiacandrenalalterationsduringchronicundernutrition
AT vieirafilholeuciod mechanismsinvolvingangiiandmapkerk12signalingpathwaysunderliecardiacandrenalalterationsduringchronicundernutrition
AT castrochavescarmen mechanismsinvolvingangiiandmapkerk12signalingpathwaysunderliecardiacandrenalalterationsduringchronicundernutrition
AT ribeirovaldilenes mechanismsinvolvingangiiandmapkerk12signalingpathwaysunderliecardiacandrenalalterationsduringchronicundernutrition
AT paixaoanado mechanismsinvolvingangiiandmapkerk12signalingpathwaysunderliecardiacandrenalalterationsduringchronicundernutrition
AT medeiemiliano mechanismsinvolvingangiiandmapkerk12signalingpathwaysunderliecardiacandrenalalterationsduringchronicundernutrition
AT vieyraadalberto mechanismsinvolvingangiiandmapkerk12signalingpathwaysunderliecardiacandrenalalterationsduringchronicundernutrition