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Disruption of p16 and Activation of Kras in Pancreas Increase Ductal Adenocarcinoma Formation and Metastasis in vivo

Inactivation of tumor suppressor gene p16/INK4A and oncogenic activation of KRAS occur in almost all pancreatic cancers. To better understand the roles of p16 in pancreatic tumorigenesis, we created a conditional p16 knockout mouse line (p16(flox/flox)), in which p16 is specifically disrupted in a t...

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Autores principales: Qiu, Wanglong, Sahin, Fikret, Iacobuzio-Donahue, Christine A., Garcia-Carracedo, Dario, Wang, Wendy M., Kuo, Chia-Yu, Chen, Doris, Arking, Dan E., Lowy, Andrew M., Hruban, Ralph H., Remotti, Helen E., Su, Gloria H.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3259996/
https://www.ncbi.nlm.nih.gov/pubmed/22113502
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author Qiu, Wanglong
Sahin, Fikret
Iacobuzio-Donahue, Christine A.
Garcia-Carracedo, Dario
Wang, Wendy M.
Kuo, Chia-Yu
Chen, Doris
Arking, Dan E.
Lowy, Andrew M.
Hruban, Ralph H.
Remotti, Helen E.
Su, Gloria H.
author_facet Qiu, Wanglong
Sahin, Fikret
Iacobuzio-Donahue, Christine A.
Garcia-Carracedo, Dario
Wang, Wendy M.
Kuo, Chia-Yu
Chen, Doris
Arking, Dan E.
Lowy, Andrew M.
Hruban, Ralph H.
Remotti, Helen E.
Su, Gloria H.
author_sort Qiu, Wanglong
collection PubMed
description Inactivation of tumor suppressor gene p16/INK4A and oncogenic activation of KRAS occur in almost all pancreatic cancers. To better understand the roles of p16 in pancreatic tumorigenesis, we created a conditional p16 knockout mouse line (p16(flox/flox)), in which p16 is specifically disrupted in a tissue-specific manner without affecting p19/ARF expression. p16(flox/flox); LSL-Kras(G12D); Pdx1-Cre mice developed the full spectrum of pancreatic intraepithelial neoplasia (mPanIN) lesions, pancreatic ductal adenocarcinoma (PDA), and metastases were observed in all the mice. Here we report a mouse model that simulates human pancreatic tumorigenesis at both genetic and histologic levels and is ideal for studies of metastasis. During the progression from primary tumors to metastases, the wild-type allele of Kras was progressively lost (loss of heterozygosity at Kras or LOH at Kras) in p16(flox/flox); LSL- Kras(G12D); Pdx1-Cre mice. These observations suggest a role for Kras beyond tumor initiation. In vitro assays performed with cancer cell lines derived from primary pancreatic tumors of these mice showed that cancer cells with LOH at Kras exhibited more aggressive phenotypes than those retained the wild-type Kras allele, indicating that LOH at Kras can provide cancer cells functional growth advantages and promote metastasis. Increased LOH at KRAS was also observed in progression of human pancreatic primary tumors to metastases, again supporting a role for the KRAS gene in cancer metastasis. This finding has potential translational implications- future KRAS target therapies may need to consider targeting oncogenic KRAS specifically without inhibiting wild-type KRAS function.
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spelling pubmed-32599962012-01-18 Disruption of p16 and Activation of Kras in Pancreas Increase Ductal Adenocarcinoma Formation and Metastasis in vivo Qiu, Wanglong Sahin, Fikret Iacobuzio-Donahue, Christine A. Garcia-Carracedo, Dario Wang, Wendy M. Kuo, Chia-Yu Chen, Doris Arking, Dan E. Lowy, Andrew M. Hruban, Ralph H. Remotti, Helen E. Su, Gloria H. Oncotarget Research Papers Inactivation of tumor suppressor gene p16/INK4A and oncogenic activation of KRAS occur in almost all pancreatic cancers. To better understand the roles of p16 in pancreatic tumorigenesis, we created a conditional p16 knockout mouse line (p16(flox/flox)), in which p16 is specifically disrupted in a tissue-specific manner without affecting p19/ARF expression. p16(flox/flox); LSL-Kras(G12D); Pdx1-Cre mice developed the full spectrum of pancreatic intraepithelial neoplasia (mPanIN) lesions, pancreatic ductal adenocarcinoma (PDA), and metastases were observed in all the mice. Here we report a mouse model that simulates human pancreatic tumorigenesis at both genetic and histologic levels and is ideal for studies of metastasis. During the progression from primary tumors to metastases, the wild-type allele of Kras was progressively lost (loss of heterozygosity at Kras or LOH at Kras) in p16(flox/flox); LSL- Kras(G12D); Pdx1-Cre mice. These observations suggest a role for Kras beyond tumor initiation. In vitro assays performed with cancer cell lines derived from primary pancreatic tumors of these mice showed that cancer cells with LOH at Kras exhibited more aggressive phenotypes than those retained the wild-type Kras allele, indicating that LOH at Kras can provide cancer cells functional growth advantages and promote metastasis. Increased LOH at KRAS was also observed in progression of human pancreatic primary tumors to metastases, again supporting a role for the KRAS gene in cancer metastasis. This finding has potential translational implications- future KRAS target therapies may need to consider targeting oncogenic KRAS specifically without inhibiting wild-type KRAS function. Impact Journals LLC 2011-11-23 /pmc/articles/PMC3259996/ /pubmed/22113502 Text en Copyright: © 2011 Qiu et al. http://creativecommons.org/licenses/by/2.5/ 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 credited
spellingShingle Research Papers
Qiu, Wanglong
Sahin, Fikret
Iacobuzio-Donahue, Christine A.
Garcia-Carracedo, Dario
Wang, Wendy M.
Kuo, Chia-Yu
Chen, Doris
Arking, Dan E.
Lowy, Andrew M.
Hruban, Ralph H.
Remotti, Helen E.
Su, Gloria H.
Disruption of p16 and Activation of Kras in Pancreas Increase Ductal Adenocarcinoma Formation and Metastasis in vivo
title Disruption of p16 and Activation of Kras in Pancreas Increase Ductal Adenocarcinoma Formation and Metastasis in vivo
title_full Disruption of p16 and Activation of Kras in Pancreas Increase Ductal Adenocarcinoma Formation and Metastasis in vivo
title_fullStr Disruption of p16 and Activation of Kras in Pancreas Increase Ductal Adenocarcinoma Formation and Metastasis in vivo
title_full_unstemmed Disruption of p16 and Activation of Kras in Pancreas Increase Ductal Adenocarcinoma Formation and Metastasis in vivo
title_short Disruption of p16 and Activation of Kras in Pancreas Increase Ductal Adenocarcinoma Formation and Metastasis in vivo
title_sort disruption of p16 and activation of kras in pancreas increase ductal adenocarcinoma formation and metastasis in vivo
topic Research Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3259996/
https://www.ncbi.nlm.nih.gov/pubmed/22113502
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