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Deficiency of FLCN in Mouse Kidney Led to Development of Polycystic Kidneys and Renal Neoplasia

The Birt–Hogg–Dubé (BHD) disease is a genetic cancer syndrome. The responsible gene, BHD, has been identified by positional cloning and thought to be a novel tumor suppressor gene. BHD mutations cause many types of diseases including renal cell carcinomas, fibrofolliculomas, spontaneous pneumothorax...

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Autores principales: Chen, Jindong, Futami, Kunihiko, Petillo, David, Peng, Jun, Wang, Pengfei, Knol, Jared, Li, Yan, Khoo, Sok-Kean, Huang, Dan, Qian, Chao-Nan, Zhao, Ping, Dykyma, Karl, Zhang, Racheal, Cao, Brian, Yang, Ximing J., Furge, Kyle, Williams, Bart O., Teh, Bin Tean
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2570491/
https://www.ncbi.nlm.nih.gov/pubmed/18974783
http://dx.doi.org/10.1371/journal.pone.0003581
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author Chen, Jindong
Futami, Kunihiko
Petillo, David
Peng, Jun
Wang, Pengfei
Knol, Jared
Li, Yan
Khoo, Sok-Kean
Huang, Dan
Qian, Chao-Nan
Zhao, Ping
Dykyma, Karl
Zhang, Racheal
Cao, Brian
Yang, Ximing J.
Furge, Kyle
Williams, Bart O.
Teh, Bin Tean
author_facet Chen, Jindong
Futami, Kunihiko
Petillo, David
Peng, Jun
Wang, Pengfei
Knol, Jared
Li, Yan
Khoo, Sok-Kean
Huang, Dan
Qian, Chao-Nan
Zhao, Ping
Dykyma, Karl
Zhang, Racheal
Cao, Brian
Yang, Ximing J.
Furge, Kyle
Williams, Bart O.
Teh, Bin Tean
author_sort Chen, Jindong
collection PubMed
description The Birt–Hogg–Dubé (BHD) disease is a genetic cancer syndrome. The responsible gene, BHD, has been identified by positional cloning and thought to be a novel tumor suppressor gene. BHD mutations cause many types of diseases including renal cell carcinomas, fibrofolliculomas, spontaneous pneumothorax, lung cysts, and colonic polyps/cancers. By combining Gateway Technology with the Ksp-Cre gene knockout system, we have developed a kidney-specific BHD knockout mouse model. BHD(flox/flox)/Ksp-Cre mice developed enlarged kidneys characterized by polycystic kidneys, hyperplasia, and cystic renal cell carcinoma. The affected BHD(flox/flox)/Ksp-Cre mice died of renal failure at approximate three weeks of age, having blood urea nitrogen levels over tenfold higher than those of BHD (flox/+)/Ksp-Cre and wild-type littermate controls. We further demonstrated that these phenotypes were caused by inactivation of BHD and subsequent activation of the mTOR pathway. Application of rapamycin, which inhibits mTOR activity, to the affected mice led to extended survival and inhibited further progression of cystogenesis. These results provide a correlation of kidney-targeted gene inactivation with renal carcinoma, and they suggest that the BHD product FLCN, functioning as a cyst and tumor suppressor, like other hamartoma syndrome–related proteins such as PTEN, LKB1, and TSC1/2, is a component of the mTOR pathway, constituting a novel FLCN-mTOR signaling branch that regulates cell growth/proliferation.
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spelling pubmed-25704912008-10-30 Deficiency of FLCN in Mouse Kidney Led to Development of Polycystic Kidneys and Renal Neoplasia Chen, Jindong Futami, Kunihiko Petillo, David Peng, Jun Wang, Pengfei Knol, Jared Li, Yan Khoo, Sok-Kean Huang, Dan Qian, Chao-Nan Zhao, Ping Dykyma, Karl Zhang, Racheal Cao, Brian Yang, Ximing J. Furge, Kyle Williams, Bart O. Teh, Bin Tean PLoS One Research Article The Birt–Hogg–Dubé (BHD) disease is a genetic cancer syndrome. The responsible gene, BHD, has been identified by positional cloning and thought to be a novel tumor suppressor gene. BHD mutations cause many types of diseases including renal cell carcinomas, fibrofolliculomas, spontaneous pneumothorax, lung cysts, and colonic polyps/cancers. By combining Gateway Technology with the Ksp-Cre gene knockout system, we have developed a kidney-specific BHD knockout mouse model. BHD(flox/flox)/Ksp-Cre mice developed enlarged kidneys characterized by polycystic kidneys, hyperplasia, and cystic renal cell carcinoma. The affected BHD(flox/flox)/Ksp-Cre mice died of renal failure at approximate three weeks of age, having blood urea nitrogen levels over tenfold higher than those of BHD (flox/+)/Ksp-Cre and wild-type littermate controls. We further demonstrated that these phenotypes were caused by inactivation of BHD and subsequent activation of the mTOR pathway. Application of rapamycin, which inhibits mTOR activity, to the affected mice led to extended survival and inhibited further progression of cystogenesis. These results provide a correlation of kidney-targeted gene inactivation with renal carcinoma, and they suggest that the BHD product FLCN, functioning as a cyst and tumor suppressor, like other hamartoma syndrome–related proteins such as PTEN, LKB1, and TSC1/2, is a component of the mTOR pathway, constituting a novel FLCN-mTOR signaling branch that regulates cell growth/proliferation. Public Library of Science 2008-10-30 /pmc/articles/PMC2570491/ /pubmed/18974783 http://dx.doi.org/10.1371/journal.pone.0003581 Text en Chen 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, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Chen, Jindong
Futami, Kunihiko
Petillo, David
Peng, Jun
Wang, Pengfei
Knol, Jared
Li, Yan
Khoo, Sok-Kean
Huang, Dan
Qian, Chao-Nan
Zhao, Ping
Dykyma, Karl
Zhang, Racheal
Cao, Brian
Yang, Ximing J.
Furge, Kyle
Williams, Bart O.
Teh, Bin Tean
Deficiency of FLCN in Mouse Kidney Led to Development of Polycystic Kidneys and Renal Neoplasia
title Deficiency of FLCN in Mouse Kidney Led to Development of Polycystic Kidneys and Renal Neoplasia
title_full Deficiency of FLCN in Mouse Kidney Led to Development of Polycystic Kidneys and Renal Neoplasia
title_fullStr Deficiency of FLCN in Mouse Kidney Led to Development of Polycystic Kidneys and Renal Neoplasia
title_full_unstemmed Deficiency of FLCN in Mouse Kidney Led to Development of Polycystic Kidneys and Renal Neoplasia
title_short Deficiency of FLCN in Mouse Kidney Led to Development of Polycystic Kidneys and Renal Neoplasia
title_sort deficiency of flcn in mouse kidney led to development of polycystic kidneys and renal neoplasia
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2570491/
https://www.ncbi.nlm.nih.gov/pubmed/18974783
http://dx.doi.org/10.1371/journal.pone.0003581
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