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Loss of Fnip1 alters kidney developmental transcriptional program and synergizes with TSC1 loss to promote mTORC1 activation and renal cyst formation

Birt-Hogg-Dube’ Syndrome (BHDS) is a rare genetic disorder in humans characterized by skin hamartomas, lung cysts, pneumothorax, and increased risk of renal tumors. BHDS is caused by mutations in the BHD gene, which encodes for Folliculin, a cytoplasmic adapter protein that binds to Folliculin inter...

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Autores principales: Centini, Ryan, Tsang, Mark, Iwata, Terri, Park, Heon, Delrow, Jeffrey, Margineantu, Daciana, Iritani, Brandon M., Gu, Haiwei, Liggitt, H. Denny, Kang, Janella, Kang, Lim, Hockenbery, David M., Raftery, Daniel, Iritani, Brian M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5999084/
https://www.ncbi.nlm.nih.gov/pubmed/29897930
http://dx.doi.org/10.1371/journal.pone.0197973
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author Centini, Ryan
Tsang, Mark
Iwata, Terri
Park, Heon
Delrow, Jeffrey
Margineantu, Daciana
Iritani, Brandon M.
Gu, Haiwei
Liggitt, H. Denny
Kang, Janella
Kang, Lim
Hockenbery, David M.
Raftery, Daniel
Iritani, Brian M.
author_facet Centini, Ryan
Tsang, Mark
Iwata, Terri
Park, Heon
Delrow, Jeffrey
Margineantu, Daciana
Iritani, Brandon M.
Gu, Haiwei
Liggitt, H. Denny
Kang, Janella
Kang, Lim
Hockenbery, David M.
Raftery, Daniel
Iritani, Brian M.
author_sort Centini, Ryan
collection PubMed
description Birt-Hogg-Dube’ Syndrome (BHDS) is a rare genetic disorder in humans characterized by skin hamartomas, lung cysts, pneumothorax, and increased risk of renal tumors. BHDS is caused by mutations in the BHD gene, which encodes for Folliculin, a cytoplasmic adapter protein that binds to Folliculin interacting proteins-1 and -2 (Fnip1, Fnip2) as well as the master energy sensor AMP kinase (AMPK). Whereas kidney-specific deletion of the Bhd gene in mice is known to result in polycystic kidney disease (PKD) and renal cell carcinoma, the roles of Fnip1 in renal cell development and function are unclear. In this study, we utilized mice with constitutive deletion of the Fnip1 gene to show that the loss of Fnip1 is sufficient to result in renal cyst formation, which was characterized by decreased AMPK activation, increased mTOR activation, and metabolic hyperactivation. Using RNAseq, we found that Fnip1 disruption resulted in many cellular and molecular changes previously implicated in the development of PKD in humans, including alterations in the expression of ion and amino acid transporters, increased cell adhesion, and increased inflammation. Loss of Fnip1 synergized with Tsc1 loss to hyperactivate mTOR, increase Erk activation, and greatly accelerate the development of PKD. Our results collectively define roles for Fnip1 in regulating kidney development and function, and provide a model for how loss of Fnip1 contributes to PKD and perhaps renal cell carcinoma.
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spelling pubmed-59990842018-06-21 Loss of Fnip1 alters kidney developmental transcriptional program and synergizes with TSC1 loss to promote mTORC1 activation and renal cyst formation Centini, Ryan Tsang, Mark Iwata, Terri Park, Heon Delrow, Jeffrey Margineantu, Daciana Iritani, Brandon M. Gu, Haiwei Liggitt, H. Denny Kang, Janella Kang, Lim Hockenbery, David M. Raftery, Daniel Iritani, Brian M. PLoS One Research Article Birt-Hogg-Dube’ Syndrome (BHDS) is a rare genetic disorder in humans characterized by skin hamartomas, lung cysts, pneumothorax, and increased risk of renal tumors. BHDS is caused by mutations in the BHD gene, which encodes for Folliculin, a cytoplasmic adapter protein that binds to Folliculin interacting proteins-1 and -2 (Fnip1, Fnip2) as well as the master energy sensor AMP kinase (AMPK). Whereas kidney-specific deletion of the Bhd gene in mice is known to result in polycystic kidney disease (PKD) and renal cell carcinoma, the roles of Fnip1 in renal cell development and function are unclear. In this study, we utilized mice with constitutive deletion of the Fnip1 gene to show that the loss of Fnip1 is sufficient to result in renal cyst formation, which was characterized by decreased AMPK activation, increased mTOR activation, and metabolic hyperactivation. Using RNAseq, we found that Fnip1 disruption resulted in many cellular and molecular changes previously implicated in the development of PKD in humans, including alterations in the expression of ion and amino acid transporters, increased cell adhesion, and increased inflammation. Loss of Fnip1 synergized with Tsc1 loss to hyperactivate mTOR, increase Erk activation, and greatly accelerate the development of PKD. Our results collectively define roles for Fnip1 in regulating kidney development and function, and provide a model for how loss of Fnip1 contributes to PKD and perhaps renal cell carcinoma. Public Library of Science 2018-06-13 /pmc/articles/PMC5999084/ /pubmed/29897930 http://dx.doi.org/10.1371/journal.pone.0197973 Text en © 2018 Centini et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Centini, Ryan
Tsang, Mark
Iwata, Terri
Park, Heon
Delrow, Jeffrey
Margineantu, Daciana
Iritani, Brandon M.
Gu, Haiwei
Liggitt, H. Denny
Kang, Janella
Kang, Lim
Hockenbery, David M.
Raftery, Daniel
Iritani, Brian M.
Loss of Fnip1 alters kidney developmental transcriptional program and synergizes with TSC1 loss to promote mTORC1 activation and renal cyst formation
title Loss of Fnip1 alters kidney developmental transcriptional program and synergizes with TSC1 loss to promote mTORC1 activation and renal cyst formation
title_full Loss of Fnip1 alters kidney developmental transcriptional program and synergizes with TSC1 loss to promote mTORC1 activation and renal cyst formation
title_fullStr Loss of Fnip1 alters kidney developmental transcriptional program and synergizes with TSC1 loss to promote mTORC1 activation and renal cyst formation
title_full_unstemmed Loss of Fnip1 alters kidney developmental transcriptional program and synergizes with TSC1 loss to promote mTORC1 activation and renal cyst formation
title_short Loss of Fnip1 alters kidney developmental transcriptional program and synergizes with TSC1 loss to promote mTORC1 activation and renal cyst formation
title_sort loss of fnip1 alters kidney developmental transcriptional program and synergizes with tsc1 loss to promote mtorc1 activation and renal cyst formation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5999084/
https://www.ncbi.nlm.nih.gov/pubmed/29897930
http://dx.doi.org/10.1371/journal.pone.0197973
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