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Differences in the timing and magnitude of Pkd1 gene deletion determine the severity of polycystic kidney disease in an orthologous mouse model of ADPKD

Development of a disease‐modifying therapy to treat autosomal dominant polycystic kidney disease (ADPKD) requires well‐characterized preclinical models that accurately reflect the pathology and biochemical changes associated with the disease. Using a Pkd1 conditional knockout mouse, we demonstrate t...

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Autores principales: Rogers, Kelly A., Moreno, Sarah E., Smith, Laurie A., Husson, Hervé, Bukanov, Nikolay O., Ledbetter, Steven R., Budman, Yeva, Lu, Yuefeng, Wang, Bing, Ibraghimov‐Beskrovnaya, Oxana, Natoli, Thomas A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4926022/
https://www.ncbi.nlm.nih.gov/pubmed/27356569
http://dx.doi.org/10.14814/phy2.12846
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author Rogers, Kelly A.
Moreno, Sarah E.
Smith, Laurie A.
Husson, Hervé
Bukanov, Nikolay O.
Ledbetter, Steven R.
Budman, Yeva
Lu, Yuefeng
Wang, Bing
Ibraghimov‐Beskrovnaya, Oxana
Natoli, Thomas A.
author_facet Rogers, Kelly A.
Moreno, Sarah E.
Smith, Laurie A.
Husson, Hervé
Bukanov, Nikolay O.
Ledbetter, Steven R.
Budman, Yeva
Lu, Yuefeng
Wang, Bing
Ibraghimov‐Beskrovnaya, Oxana
Natoli, Thomas A.
author_sort Rogers, Kelly A.
collection PubMed
description Development of a disease‐modifying therapy to treat autosomal dominant polycystic kidney disease (ADPKD) requires well‐characterized preclinical models that accurately reflect the pathology and biochemical changes associated with the disease. Using a Pkd1 conditional knockout mouse, we demonstrate that subtly altering the timing and extent of Pkd1 deletion can have a significant impact on the origin and severity of kidney cyst formation. Pkd1 deletion on postnatal day 1 or 2 results in cysts arising from both the cortical and medullary regions, whereas deletion on postnatal days 3–8 results in primarily medullary cyst formation. Altering the extent of Pkd1 deletion by modulating the tamoxifen dose produces dose‐dependent changes in the severity, but not origin, of cystogenesis. Limited Pkd1 deletion produces progressive kidney cystogenesis, accompanied by interstitial fibrosis and loss of kidney function. Cyst growth occurs in two phases: an early, rapid growth phase, followed by a later, slow growth period. Analysis of biochemical pathway changes in cystic kidneys reveals dysregulation of the cell cycle, increased proliferation and apoptosis, activation of Mek‐Erk, Akt‐mTOR, and Wnt‐β‐catenin signaling pathways, and altered glycosphingolipid metabolism that resemble the biochemical changes occurring in human ADPKD kidneys. These pathways are normally active in neonatal mouse kidneys until repressed around 3 weeks of age; however, they remain active following Pkd1 deletion. Together, this work describes the key parameters to accurately model the pathological and biochemical changes associated with ADPKD in a conditional mouse model.
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spelling pubmed-49260222016-07-06 Differences in the timing and magnitude of Pkd1 gene deletion determine the severity of polycystic kidney disease in an orthologous mouse model of ADPKD Rogers, Kelly A. Moreno, Sarah E. Smith, Laurie A. Husson, Hervé Bukanov, Nikolay O. Ledbetter, Steven R. Budman, Yeva Lu, Yuefeng Wang, Bing Ibraghimov‐Beskrovnaya, Oxana Natoli, Thomas A. Physiol Rep Original Research Development of a disease‐modifying therapy to treat autosomal dominant polycystic kidney disease (ADPKD) requires well‐characterized preclinical models that accurately reflect the pathology and biochemical changes associated with the disease. Using a Pkd1 conditional knockout mouse, we demonstrate that subtly altering the timing and extent of Pkd1 deletion can have a significant impact on the origin and severity of kidney cyst formation. Pkd1 deletion on postnatal day 1 or 2 results in cysts arising from both the cortical and medullary regions, whereas deletion on postnatal days 3–8 results in primarily medullary cyst formation. Altering the extent of Pkd1 deletion by modulating the tamoxifen dose produces dose‐dependent changes in the severity, but not origin, of cystogenesis. Limited Pkd1 deletion produces progressive kidney cystogenesis, accompanied by interstitial fibrosis and loss of kidney function. Cyst growth occurs in two phases: an early, rapid growth phase, followed by a later, slow growth period. Analysis of biochemical pathway changes in cystic kidneys reveals dysregulation of the cell cycle, increased proliferation and apoptosis, activation of Mek‐Erk, Akt‐mTOR, and Wnt‐β‐catenin signaling pathways, and altered glycosphingolipid metabolism that resemble the biochemical changes occurring in human ADPKD kidneys. These pathways are normally active in neonatal mouse kidneys until repressed around 3 weeks of age; however, they remain active following Pkd1 deletion. Together, this work describes the key parameters to accurately model the pathological and biochemical changes associated with ADPKD in a conditional mouse model. John Wiley and Sons Inc. 2016-06-29 /pmc/articles/PMC4926022/ /pubmed/27356569 http://dx.doi.org/10.14814/phy2.12846 Text en © 2016 Sanofi‐Genzyme R&D Center. Physiological Reports published by Wiley Periodicals, Inc. on behalf of the American Physiological Society and The Physiological Society. This is an open access article under the terms of the Creative Commons Attribution (http://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Research
Rogers, Kelly A.
Moreno, Sarah E.
Smith, Laurie A.
Husson, Hervé
Bukanov, Nikolay O.
Ledbetter, Steven R.
Budman, Yeva
Lu, Yuefeng
Wang, Bing
Ibraghimov‐Beskrovnaya, Oxana
Natoli, Thomas A.
Differences in the timing and magnitude of Pkd1 gene deletion determine the severity of polycystic kidney disease in an orthologous mouse model of ADPKD
title Differences in the timing and magnitude of Pkd1 gene deletion determine the severity of polycystic kidney disease in an orthologous mouse model of ADPKD
title_full Differences in the timing and magnitude of Pkd1 gene deletion determine the severity of polycystic kidney disease in an orthologous mouse model of ADPKD
title_fullStr Differences in the timing and magnitude of Pkd1 gene deletion determine the severity of polycystic kidney disease in an orthologous mouse model of ADPKD
title_full_unstemmed Differences in the timing and magnitude of Pkd1 gene deletion determine the severity of polycystic kidney disease in an orthologous mouse model of ADPKD
title_short Differences in the timing and magnitude of Pkd1 gene deletion determine the severity of polycystic kidney disease in an orthologous mouse model of ADPKD
title_sort differences in the timing and magnitude of pkd1 gene deletion determine the severity of polycystic kidney disease in an orthologous mouse model of adpkd
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4926022/
https://www.ncbi.nlm.nih.gov/pubmed/27356569
http://dx.doi.org/10.14814/phy2.12846
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