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Bcl-2–Modifying Factor Induces Renal Proximal Tubular Cell Apoptosis in Diabetic Mice

This study investigated the mechanisms underlying tubular apoptosis in diabetes by identifying proapoptotic genes that are differentially upregulated by reactive oxygen species in renal proximal tubular cells (RPTCs) in models of diabetes. Total RNAs isolated from renal proximal tubules (RPTs) of 20...

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Detalles Bibliográficos
Autores principales: Lau, Garnet J., Godin, Nicolas, Maachi, Hasna, Lo, Chao-Sheng, Wu, Shyh-Jong, Zhu, Jian-Xin, Brezniceanu, Marie-Luise, Chénier, Isabelle, Fragasso-Marquis, Joelle, Lattouf, Jean-Baptiste, Ethier, Jean, Filep, Janos G., Ingelfinger, Julie R., Nair, Viji, Kretzler, Matthias, Cohen, Clemens D., Zhang, Shao-Ling, Chan, John S.D.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Diabetes Association 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3266424/
https://www.ncbi.nlm.nih.gov/pubmed/22210314
http://dx.doi.org/10.2337/db11-0141
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author Lau, Garnet J.
Godin, Nicolas
Maachi, Hasna
Lo, Chao-Sheng
Wu, Shyh-Jong
Zhu, Jian-Xin
Brezniceanu, Marie-Luise
Chénier, Isabelle
Fragasso-Marquis, Joelle
Lattouf, Jean-Baptiste
Ethier, Jean
Filep, Janos G.
Ingelfinger, Julie R.
Nair, Viji
Kretzler, Matthias
Cohen, Clemens D.
Zhang, Shao-Ling
Chan, John S.D.
author_facet Lau, Garnet J.
Godin, Nicolas
Maachi, Hasna
Lo, Chao-Sheng
Wu, Shyh-Jong
Zhu, Jian-Xin
Brezniceanu, Marie-Luise
Chénier, Isabelle
Fragasso-Marquis, Joelle
Lattouf, Jean-Baptiste
Ethier, Jean
Filep, Janos G.
Ingelfinger, Julie R.
Nair, Viji
Kretzler, Matthias
Cohen, Clemens D.
Zhang, Shao-Ling
Chan, John S.D.
author_sort Lau, Garnet J.
collection PubMed
description This study investigated the mechanisms underlying tubular apoptosis in diabetes by identifying proapoptotic genes that are differentially upregulated by reactive oxygen species in renal proximal tubular cells (RPTCs) in models of diabetes. Total RNAs isolated from renal proximal tubules (RPTs) of 20-week-old heterozygous db/m+, db/db, and db/db catalase (CAT)-transgenic (Tg) mice were used for DNA chip microarray analysis. Real-time quantitative PCR assays, immunohistochemistry, and mice rendered diabetic with streptozotocin were used to validate the proapoptotic gene expression in RPTs. Cultured rat RPTCs were used to confirm the apoptotic activity and regulation of proapoptotic gene expression. Additionally, studies in kidney tissues from patients with and without diabetes were used to confirm enhanced proapoptotic gene expression in RPTs. Bcl-2–modifying factor (Bmf) was differentially upregulated (P < 0.01) in RPTs of db/db mice compared with db/m+ and db/db CAT-Tg mice and in RPTs of streptozotocin-induced diabetic mice in which insulin reversed this finding. In vitro, Bmf cDNA overexpression in rat RPTCs coimmunoprecipated with Bcl-2, enhanced caspase-3 activity, and promoted apoptosis. High glucose (25 mmol/L) induced Bmf mRNA expression in RPTCs, whereas rotenone, catalase, diphenylene iodinium, and apocynin decreased it. Knockdown of Bmf with small interfering RNA reduced high glucose–induced apoptosis in RPTCs. More important, enhanced Bmf expression was detected in RPTs of kidneys from patients with diabetes. These data demonstrate differential upregulation of Bmf in diabetic RPTs and suggest a potential role for Bmf in regulating RPTC apoptosis and tubular atrophy in diabetes.
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spelling pubmed-32664242013-02-01 Bcl-2–Modifying Factor Induces Renal Proximal Tubular Cell Apoptosis in Diabetic Mice Lau, Garnet J. Godin, Nicolas Maachi, Hasna Lo, Chao-Sheng Wu, Shyh-Jong Zhu, Jian-Xin Brezniceanu, Marie-Luise Chénier, Isabelle Fragasso-Marquis, Joelle Lattouf, Jean-Baptiste Ethier, Jean Filep, Janos G. Ingelfinger, Julie R. Nair, Viji Kretzler, Matthias Cohen, Clemens D. Zhang, Shao-Ling Chan, John S.D. Diabetes Complications This study investigated the mechanisms underlying tubular apoptosis in diabetes by identifying proapoptotic genes that are differentially upregulated by reactive oxygen species in renal proximal tubular cells (RPTCs) in models of diabetes. Total RNAs isolated from renal proximal tubules (RPTs) of 20-week-old heterozygous db/m+, db/db, and db/db catalase (CAT)-transgenic (Tg) mice were used for DNA chip microarray analysis. Real-time quantitative PCR assays, immunohistochemistry, and mice rendered diabetic with streptozotocin were used to validate the proapoptotic gene expression in RPTs. Cultured rat RPTCs were used to confirm the apoptotic activity and regulation of proapoptotic gene expression. Additionally, studies in kidney tissues from patients with and without diabetes were used to confirm enhanced proapoptotic gene expression in RPTs. Bcl-2–modifying factor (Bmf) was differentially upregulated (P < 0.01) in RPTs of db/db mice compared with db/m+ and db/db CAT-Tg mice and in RPTs of streptozotocin-induced diabetic mice in which insulin reversed this finding. In vitro, Bmf cDNA overexpression in rat RPTCs coimmunoprecipated with Bcl-2, enhanced caspase-3 activity, and promoted apoptosis. High glucose (25 mmol/L) induced Bmf mRNA expression in RPTCs, whereas rotenone, catalase, diphenylene iodinium, and apocynin decreased it. Knockdown of Bmf with small interfering RNA reduced high glucose–induced apoptosis in RPTCs. More important, enhanced Bmf expression was detected in RPTs of kidneys from patients with diabetes. These data demonstrate differential upregulation of Bmf in diabetic RPTs and suggest a potential role for Bmf in regulating RPTC apoptosis and tubular atrophy in diabetes. American Diabetes Association 2012-02 2012-01-17 /pmc/articles/PMC3266424/ /pubmed/22210314 http://dx.doi.org/10.2337/db11-0141 Text en © 2012 by the American Diabetes Association. Readers may use this article as long as the work is properly cited, the use is educational and not for profit, and the work is not altered. See http://creativecommons.org/licenses/by-nc-nd/3.0/ for details.
spellingShingle Complications
Lau, Garnet J.
Godin, Nicolas
Maachi, Hasna
Lo, Chao-Sheng
Wu, Shyh-Jong
Zhu, Jian-Xin
Brezniceanu, Marie-Luise
Chénier, Isabelle
Fragasso-Marquis, Joelle
Lattouf, Jean-Baptiste
Ethier, Jean
Filep, Janos G.
Ingelfinger, Julie R.
Nair, Viji
Kretzler, Matthias
Cohen, Clemens D.
Zhang, Shao-Ling
Chan, John S.D.
Bcl-2–Modifying Factor Induces Renal Proximal Tubular Cell Apoptosis in Diabetic Mice
title Bcl-2–Modifying Factor Induces Renal Proximal Tubular Cell Apoptosis in Diabetic Mice
title_full Bcl-2–Modifying Factor Induces Renal Proximal Tubular Cell Apoptosis in Diabetic Mice
title_fullStr Bcl-2–Modifying Factor Induces Renal Proximal Tubular Cell Apoptosis in Diabetic Mice
title_full_unstemmed Bcl-2–Modifying Factor Induces Renal Proximal Tubular Cell Apoptosis in Diabetic Mice
title_short Bcl-2–Modifying Factor Induces Renal Proximal Tubular Cell Apoptosis in Diabetic Mice
title_sort bcl-2–modifying factor induces renal proximal tubular cell apoptosis in diabetic mice
topic Complications
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3266424/
https://www.ncbi.nlm.nih.gov/pubmed/22210314
http://dx.doi.org/10.2337/db11-0141
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