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Crucial Roles of the Protein Kinases MK2 and MK3 in a Mouse Model of Glomerulonephritis

Elevated mitogen-activated protein kinase p38 (p38 MAPK) signaling has been implicated in various experimental and human glomerulopathies, and its inhibition has proven beneficial in animal models of these diseases. p38 MAPK signaling is partially mediated through MK2 and MK3, two phylogenetically r...

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Autores principales: Guess, Adam J., Ayoob, Rose, Chanley, Melinda, Manley, Joshua, Cajaiba, Mariana M., Agrawal, Shipra, Pengal, Ruma, Pyle, Amy L., Becknell, Brian, Kopp, Jeffrey B., Ronkina, Natalia, Gaestel, Matthias, Benndorf, Rainer, Smoyer, William E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3553169/
https://www.ncbi.nlm.nih.gov/pubmed/23372691
http://dx.doi.org/10.1371/journal.pone.0054239
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author Guess, Adam J.
Ayoob, Rose
Chanley, Melinda
Manley, Joshua
Cajaiba, Mariana M.
Agrawal, Shipra
Pengal, Ruma
Pyle, Amy L.
Becknell, Brian
Kopp, Jeffrey B.
Ronkina, Natalia
Gaestel, Matthias
Benndorf, Rainer
Smoyer, William E.
author_facet Guess, Adam J.
Ayoob, Rose
Chanley, Melinda
Manley, Joshua
Cajaiba, Mariana M.
Agrawal, Shipra
Pengal, Ruma
Pyle, Amy L.
Becknell, Brian
Kopp, Jeffrey B.
Ronkina, Natalia
Gaestel, Matthias
Benndorf, Rainer
Smoyer, William E.
author_sort Guess, Adam J.
collection PubMed
description Elevated mitogen-activated protein kinase p38 (p38 MAPK) signaling has been implicated in various experimental and human glomerulopathies, and its inhibition has proven beneficial in animal models of these diseases. p38 MAPK signaling is partially mediated through MK2 and MK3, two phylogenetically related protein kinases that are its direct substrates. The current study was designed to determine the specific roles of MK2 and MK3 in a mouse model of acute proliferative glomerulonephritis, using mice with disrupted MK2 and/or MK3 genes. We found that the absence of MK3 alone worsened the disease course and increased mortality slightly compared to wild-type mice, whereas the absence of MK2 alone exhibited no significant effect. However, in an MK3-free background, the disease course depended on the presence of MK2 in a gene dosage-dependent manner, with double knock-out mice being most susceptible to disease induction. Histological and renal functional analyses confirmed kidney damage following disease induction. Because the renal stress response plays a crucial role in kidney physiology and disease, we analyzed the stress response pattern in this disease model. We found that renal cortices of diseased mice exhibited a pronounced and specific pattern of expression and/or phosphorylation of stress proteins and other indicators of the stress response (HSPB1, HSPB6, HSPB8, CHOP, eIF2α), partially in a MK2/MK3 genotype-specific manner, and without induction of a general stress response. Similarly, the expression and activation patterns of other protein kinases downstream of p38 MAPK (MNK1, MSK1) depended partially on the MK2/MK3 genotype in this disease model. In conclusion, MK2 and MK3 together play crucial roles in the regulation of the renal stress response and in the development of glomerulonephritis, which can potentially be exploited to develop novel therapeutic approaches to treat glomerular disease.
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spelling pubmed-35531692013-01-31 Crucial Roles of the Protein Kinases MK2 and MK3 in a Mouse Model of Glomerulonephritis Guess, Adam J. Ayoob, Rose Chanley, Melinda Manley, Joshua Cajaiba, Mariana M. Agrawal, Shipra Pengal, Ruma Pyle, Amy L. Becknell, Brian Kopp, Jeffrey B. Ronkina, Natalia Gaestel, Matthias Benndorf, Rainer Smoyer, William E. PLoS One Research Article Elevated mitogen-activated protein kinase p38 (p38 MAPK) signaling has been implicated in various experimental and human glomerulopathies, and its inhibition has proven beneficial in animal models of these diseases. p38 MAPK signaling is partially mediated through MK2 and MK3, two phylogenetically related protein kinases that are its direct substrates. The current study was designed to determine the specific roles of MK2 and MK3 in a mouse model of acute proliferative glomerulonephritis, using mice with disrupted MK2 and/or MK3 genes. We found that the absence of MK3 alone worsened the disease course and increased mortality slightly compared to wild-type mice, whereas the absence of MK2 alone exhibited no significant effect. However, in an MK3-free background, the disease course depended on the presence of MK2 in a gene dosage-dependent manner, with double knock-out mice being most susceptible to disease induction. Histological and renal functional analyses confirmed kidney damage following disease induction. Because the renal stress response plays a crucial role in kidney physiology and disease, we analyzed the stress response pattern in this disease model. We found that renal cortices of diseased mice exhibited a pronounced and specific pattern of expression and/or phosphorylation of stress proteins and other indicators of the stress response (HSPB1, HSPB6, HSPB8, CHOP, eIF2α), partially in a MK2/MK3 genotype-specific manner, and without induction of a general stress response. Similarly, the expression and activation patterns of other protein kinases downstream of p38 MAPK (MNK1, MSK1) depended partially on the MK2/MK3 genotype in this disease model. In conclusion, MK2 and MK3 together play crucial roles in the regulation of the renal stress response and in the development of glomerulonephritis, which can potentially be exploited to develop novel therapeutic approaches to treat glomerular disease. Public Library of Science 2013-01-23 /pmc/articles/PMC3553169/ /pubmed/23372691 http://dx.doi.org/10.1371/journal.pone.0054239 Text en https://creativecommons.org/publicdomain/zero/1.0/ This is an open-access article distributed under the terms of the Creative Commons Public Domain declaration, which stipulates that, once placed in the public domain, this work may be freely reproduced, distributed, transmitted, modified, built upon, or otherwise used by anyone for any lawful purpose.
spellingShingle Research Article
Guess, Adam J.
Ayoob, Rose
Chanley, Melinda
Manley, Joshua
Cajaiba, Mariana M.
Agrawal, Shipra
Pengal, Ruma
Pyle, Amy L.
Becknell, Brian
Kopp, Jeffrey B.
Ronkina, Natalia
Gaestel, Matthias
Benndorf, Rainer
Smoyer, William E.
Crucial Roles of the Protein Kinases MK2 and MK3 in a Mouse Model of Glomerulonephritis
title Crucial Roles of the Protein Kinases MK2 and MK3 in a Mouse Model of Glomerulonephritis
title_full Crucial Roles of the Protein Kinases MK2 and MK3 in a Mouse Model of Glomerulonephritis
title_fullStr Crucial Roles of the Protein Kinases MK2 and MK3 in a Mouse Model of Glomerulonephritis
title_full_unstemmed Crucial Roles of the Protein Kinases MK2 and MK3 in a Mouse Model of Glomerulonephritis
title_short Crucial Roles of the Protein Kinases MK2 and MK3 in a Mouse Model of Glomerulonephritis
title_sort crucial roles of the protein kinases mk2 and mk3 in a mouse model of glomerulonephritis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3553169/
https://www.ncbi.nlm.nih.gov/pubmed/23372691
http://dx.doi.org/10.1371/journal.pone.0054239
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