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NHERF1 Loss Upregulates Enzymes of the Pentose Phosphate Pathway in Kidney Cortex

(1) Background: We previously showed Na/H exchange regulatory factor 1 (NHERF1) loss resulted in increased susceptibility to cisplatin nephrotoxicity. NHERF1-deficient cultured proximal tubule cells and proximal tubules from NHERF1 knockout (KO) mice exhibit altered mitochondrial protein expression...

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Autores principales: Bushau-Sprinkle, Adrienne, Barati, Michelle T., Gagnon, Kenneth B., Khundmiri, Syed Jalal, Kitterman, Kathleen, Hill, Bradford G., Sherwood, Amanda, Merchant, Michael, Rai, Shesh N., Srivastava, Sudhir, Clark, Barbara, Siskind, Leah, Brier, Michael, Hata, Jessica, Lederer, Eleanor
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7554817/
https://www.ncbi.nlm.nih.gov/pubmed/32937931
http://dx.doi.org/10.3390/antiox9090862
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author Bushau-Sprinkle, Adrienne
Barati, Michelle T.
Gagnon, Kenneth B.
Khundmiri, Syed Jalal
Kitterman, Kathleen
Hill, Bradford G.
Sherwood, Amanda
Merchant, Michael
Rai, Shesh N.
Srivastava, Sudhir
Clark, Barbara
Siskind, Leah
Brier, Michael
Hata, Jessica
Lederer, Eleanor
author_facet Bushau-Sprinkle, Adrienne
Barati, Michelle T.
Gagnon, Kenneth B.
Khundmiri, Syed Jalal
Kitterman, Kathleen
Hill, Bradford G.
Sherwood, Amanda
Merchant, Michael
Rai, Shesh N.
Srivastava, Sudhir
Clark, Barbara
Siskind, Leah
Brier, Michael
Hata, Jessica
Lederer, Eleanor
author_sort Bushau-Sprinkle, Adrienne
collection PubMed
description (1) Background: We previously showed Na/H exchange regulatory factor 1 (NHERF1) loss resulted in increased susceptibility to cisplatin nephrotoxicity. NHERF1-deficient cultured proximal tubule cells and proximal tubules from NHERF1 knockout (KO) mice exhibit altered mitochondrial protein expression and poor survival. We hypothesized that NHERF1 loss results in changes in metabolic pathways and/or mitochondrial dysfunction, leading to increased sensitivity to cisplatin nephrotoxicity. (2) Methods: Two to 4-month-old male wildtype (WT) and KO mice were treated with vehicle or cisplatin (20 mg/kg dose IP). After 72 h, kidney cortex homogenates were utilized for metabolic enzyme activities. Non-treated kidneys were used to isolate mitochondria for mitochondrial respiration via the Seahorse XF24 analyzer. Non-treated kidneys were also used for LC-MS analysis to evaluate kidney ATP abundance, and electron microscopy (EM) was utilized to evaluate mitochondrial morphology and number. (3) Results: KO mouse kidneys exhibit significant increases in malic enzyme and glucose-6 phosphate dehydrogenase activity under baseline conditions but in no other gluconeogenic or glycolytic enzymes. NHERF1 loss does not decrease kidney ATP content. Mitochondrial morphology, number, and area appeared normal. Isolated mitochondria function was similar between WT and KO. Conclusions: KO kidneys experience a shift in metabolism to the pentose phosphate pathway, which may sensitize them to the oxidative stress imposed by cisplatin.
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spelling pubmed-75548172020-10-14 NHERF1 Loss Upregulates Enzymes of the Pentose Phosphate Pathway in Kidney Cortex Bushau-Sprinkle, Adrienne Barati, Michelle T. Gagnon, Kenneth B. Khundmiri, Syed Jalal Kitterman, Kathleen Hill, Bradford G. Sherwood, Amanda Merchant, Michael Rai, Shesh N. Srivastava, Sudhir Clark, Barbara Siskind, Leah Brier, Michael Hata, Jessica Lederer, Eleanor Antioxidants (Basel) Article (1) Background: We previously showed Na/H exchange regulatory factor 1 (NHERF1) loss resulted in increased susceptibility to cisplatin nephrotoxicity. NHERF1-deficient cultured proximal tubule cells and proximal tubules from NHERF1 knockout (KO) mice exhibit altered mitochondrial protein expression and poor survival. We hypothesized that NHERF1 loss results in changes in metabolic pathways and/or mitochondrial dysfunction, leading to increased sensitivity to cisplatin nephrotoxicity. (2) Methods: Two to 4-month-old male wildtype (WT) and KO mice were treated with vehicle or cisplatin (20 mg/kg dose IP). After 72 h, kidney cortex homogenates were utilized for metabolic enzyme activities. Non-treated kidneys were used to isolate mitochondria for mitochondrial respiration via the Seahorse XF24 analyzer. Non-treated kidneys were also used for LC-MS analysis to evaluate kidney ATP abundance, and electron microscopy (EM) was utilized to evaluate mitochondrial morphology and number. (3) Results: KO mouse kidneys exhibit significant increases in malic enzyme and glucose-6 phosphate dehydrogenase activity under baseline conditions but in no other gluconeogenic or glycolytic enzymes. NHERF1 loss does not decrease kidney ATP content. Mitochondrial morphology, number, and area appeared normal. Isolated mitochondria function was similar between WT and KO. Conclusions: KO kidneys experience a shift in metabolism to the pentose phosphate pathway, which may sensitize them to the oxidative stress imposed by cisplatin. MDPI 2020-09-14 /pmc/articles/PMC7554817/ /pubmed/32937931 http://dx.doi.org/10.3390/antiox9090862 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Bushau-Sprinkle, Adrienne
Barati, Michelle T.
Gagnon, Kenneth B.
Khundmiri, Syed Jalal
Kitterman, Kathleen
Hill, Bradford G.
Sherwood, Amanda
Merchant, Michael
Rai, Shesh N.
Srivastava, Sudhir
Clark, Barbara
Siskind, Leah
Brier, Michael
Hata, Jessica
Lederer, Eleanor
NHERF1 Loss Upregulates Enzymes of the Pentose Phosphate Pathway in Kidney Cortex
title NHERF1 Loss Upregulates Enzymes of the Pentose Phosphate Pathway in Kidney Cortex
title_full NHERF1 Loss Upregulates Enzymes of the Pentose Phosphate Pathway in Kidney Cortex
title_fullStr NHERF1 Loss Upregulates Enzymes of the Pentose Phosphate Pathway in Kidney Cortex
title_full_unstemmed NHERF1 Loss Upregulates Enzymes of the Pentose Phosphate Pathway in Kidney Cortex
title_short NHERF1 Loss Upregulates Enzymes of the Pentose Phosphate Pathway in Kidney Cortex
title_sort nherf1 loss upregulates enzymes of the pentose phosphate pathway in kidney cortex
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7554817/
https://www.ncbi.nlm.nih.gov/pubmed/32937931
http://dx.doi.org/10.3390/antiox9090862
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