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High glucose induces Nox4 expression and podocyte apoptosis through the Smad3/ezrin/PKA pathway

Podocytes are the major target in proteinuric kidney diseases such as diabetic nephropathy. The underlying molecular mechanisms by which high glucose (HG) results in podocyte damage remain unclear. This study investigated the regulatory role of Smad3, ezrin, and protein kinase A (PKA) in NADPH oxida...

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Autores principales: Guo, Wanxu, Gao, Hang, Pan, Wei, Yu, Panapn, Che, Guanghua
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Company of Biologists Ltd 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8181897/
https://www.ncbi.nlm.nih.gov/pubmed/33046439
http://dx.doi.org/10.1242/bio.055012
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author Guo, Wanxu
Gao, Hang
Pan, Wei
Yu, Panapn
Che, Guanghua
author_facet Guo, Wanxu
Gao, Hang
Pan, Wei
Yu, Panapn
Che, Guanghua
author_sort Guo, Wanxu
collection PubMed
description Podocytes are the major target in proteinuric kidney diseases such as diabetic nephropathy. The underlying molecular mechanisms by which high glucose (HG) results in podocyte damage remain unclear. This study investigated the regulatory role of Smad3, ezrin, and protein kinase A (PKA) in NADPH oxidase (Nox4) expression, reactive oxidative species (ROS) production, and apoptosis in HG-treated podocytes. A human podocyte cell line was cultured and differentiated, then treated with 30 mM HG. Apoptosis and intracellular ROS levels were assessed using TUNEL and DCF assays, respectively. Expressions of Nox4, phospho-Smad3(Ser423/425), phospho-PKA(Thr197), and phospho-ezrin(Thr567) were evaluated using western blotting. ELISA was used to quantify intracellular cAMP concentration and PKA activity. Knockdown assay was used to inhibit the expressions of Smad3, Nox4, and ezrin by lentiviral shRNA. In HG-treated podocytes, the level of phospho-Smad3(Ser423/425) and phospho-ezrin(Thr567) was increased significantly, which was accompanied by the reduction of cAMP and phospho-PKA(Thr197). HG-induced apoptosis was significantly prevented by the Smad3-inhibitor SIS3 or shRNA-Smad3. In podocytes expressing shRNA-ezrin or shRNA-Nox4, apoptosis was remarkably mitigated following HG treatment. HG-induced upregulation of phospho-ezrin(Thr567) and downregulation of phospho-PKA(Thr197) was significantly prevented by SIS3, shRNA-ezrin or shRNA-Smad3. Forskolin, a PKA activator, significantly inhibited HG-mediated upregulation of Nox4 expression, ROS generation, and apoptosis. Additionally, an increase in the ROS level was prohibited in HG-treated podocytes with the knockdown of Nox4, Smad3, or ezrin. Taken together, our findings provided evidence that Smad3-mediated ezrin activation upregulates Nox4 expression and ROS production, by suppressing PKA activity, which may at least in part contribute to HG-induced podocyte apoptosis.
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spelling pubmed-81818972021-06-07 High glucose induces Nox4 expression and podocyte apoptosis through the Smad3/ezrin/PKA pathway Guo, Wanxu Gao, Hang Pan, Wei Yu, Panapn Che, Guanghua Biol Open Research Article Podocytes are the major target in proteinuric kidney diseases such as diabetic nephropathy. The underlying molecular mechanisms by which high glucose (HG) results in podocyte damage remain unclear. This study investigated the regulatory role of Smad3, ezrin, and protein kinase A (PKA) in NADPH oxidase (Nox4) expression, reactive oxidative species (ROS) production, and apoptosis in HG-treated podocytes. A human podocyte cell line was cultured and differentiated, then treated with 30 mM HG. Apoptosis and intracellular ROS levels were assessed using TUNEL and DCF assays, respectively. Expressions of Nox4, phospho-Smad3(Ser423/425), phospho-PKA(Thr197), and phospho-ezrin(Thr567) were evaluated using western blotting. ELISA was used to quantify intracellular cAMP concentration and PKA activity. Knockdown assay was used to inhibit the expressions of Smad3, Nox4, and ezrin by lentiviral shRNA. In HG-treated podocytes, the level of phospho-Smad3(Ser423/425) and phospho-ezrin(Thr567) was increased significantly, which was accompanied by the reduction of cAMP and phospho-PKA(Thr197). HG-induced apoptosis was significantly prevented by the Smad3-inhibitor SIS3 or shRNA-Smad3. In podocytes expressing shRNA-ezrin or shRNA-Nox4, apoptosis was remarkably mitigated following HG treatment. HG-induced upregulation of phospho-ezrin(Thr567) and downregulation of phospho-PKA(Thr197) was significantly prevented by SIS3, shRNA-ezrin or shRNA-Smad3. Forskolin, a PKA activator, significantly inhibited HG-mediated upregulation of Nox4 expression, ROS generation, and apoptosis. Additionally, an increase in the ROS level was prohibited in HG-treated podocytes with the knockdown of Nox4, Smad3, or ezrin. Taken together, our findings provided evidence that Smad3-mediated ezrin activation upregulates Nox4 expression and ROS production, by suppressing PKA activity, which may at least in part contribute to HG-induced podocyte apoptosis. The Company of Biologists Ltd 2021-05-20 /pmc/articles/PMC8181897/ /pubmed/33046439 http://dx.doi.org/10.1242/bio.055012 Text en © 2021. Published by The Company of Biologists Ltd https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0), which permits unrestricted use, distribution and reproduction in any medium provided that the original work is properly attributed.
spellingShingle Research Article
Guo, Wanxu
Gao, Hang
Pan, Wei
Yu, Panapn
Che, Guanghua
High glucose induces Nox4 expression and podocyte apoptosis through the Smad3/ezrin/PKA pathway
title High glucose induces Nox4 expression and podocyte apoptosis through the Smad3/ezrin/PKA pathway
title_full High glucose induces Nox4 expression and podocyte apoptosis through the Smad3/ezrin/PKA pathway
title_fullStr High glucose induces Nox4 expression and podocyte apoptosis through the Smad3/ezrin/PKA pathway
title_full_unstemmed High glucose induces Nox4 expression and podocyte apoptosis through the Smad3/ezrin/PKA pathway
title_short High glucose induces Nox4 expression and podocyte apoptosis through the Smad3/ezrin/PKA pathway
title_sort high glucose induces nox4 expression and podocyte apoptosis through the smad3/ezrin/pka pathway
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8181897/
https://www.ncbi.nlm.nih.gov/pubmed/33046439
http://dx.doi.org/10.1242/bio.055012
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