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Molecular and Functional Characteristics of Ovarian Surface Epithelial Cells Transformed by KrasG12D and loss of Pten in a Mouse Model in vivo

Ovarian cancer is a complex and deadly disease that remains difficult to detect at an early curable stage. Furthermore, although some oncogenic (Kras, Pten/PI3K and Trp53) pathways that are frequently mutated, deleted or amplified in ovarian cancer are known, how these pathways initiate and drive sp...

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Autores principales: Mullany, Lisa K., Fan, Heng-Yu, Liu, Zhilin, White, Lisa D., Marshall, Alexandra, Gunaratne, Preethi, Anderson, Matthew L., Creighton, Chad J., Xin, Li, Deavers, Michael, Wong, Kwong-Kwok, Richards, JoAnne S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3139785/
https://www.ncbi.nlm.nih.gov/pubmed/21423204
http://dx.doi.org/10.1038/onc.2011.70
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author Mullany, Lisa K.
Fan, Heng-Yu
Liu, Zhilin
White, Lisa D.
Marshall, Alexandra
Gunaratne, Preethi
Anderson, Matthew L.
Creighton, Chad J.
Xin, Li
Deavers, Michael
Wong, Kwong-Kwok
Richards, JoAnne S.
author_facet Mullany, Lisa K.
Fan, Heng-Yu
Liu, Zhilin
White, Lisa D.
Marshall, Alexandra
Gunaratne, Preethi
Anderson, Matthew L.
Creighton, Chad J.
Xin, Li
Deavers, Michael
Wong, Kwong-Kwok
Richards, JoAnne S.
author_sort Mullany, Lisa K.
collection PubMed
description Ovarian cancer is a complex and deadly disease that remains difficult to detect at an early curable stage. Furthermore, although some oncogenic (Kras, Pten/PI3K and Trp53) pathways that are frequently mutated, deleted or amplified in ovarian cancer are known, how these pathways initiate and drive specific morphological phenotypes and tumor outcomes remain unclear. We recently generated Pten (fl/fl); Kras(G12D);Amhr2-Cre mice to disrupt the Pten gene and express a stable mutant form of Kras(G12D) in ovarian surface epithelial (OSE) cells. Based on histopathologic criteria, the mutant mice developed low-grade ovarian serous papillary adenocarcinomas at an early age and with 100% penetrance. This highly reproducible phenotype provides the first mouse model in which to study this ovarian cancer subtype. OSE cells isolated from ovaries of mutant mice at 5 and 10 weeks of age exhibit temporal changes in the expression of specific Mullerian epithelial marker genes, grow in soft agar and develop ectopic invasive tumors in recipient mice, indicating that the cells are transformed. Gene profiling identified specific mRNAs and microRNAs differentially expressed in purified OSE cells derived from tumors of the mutant mice compared to WT OSE cells. Mapping of transcripts or genes between the mouse OSE mutant datasets, the Kras signature from human cancer cell lines and the human ovarian tumor array datasets, documented significant overlap, indicating that KRAS is a key driver of OSE transformation in this context. Two key hallmarks of the mutant OSE cells in these mice are the elevated expression of the tumor suppressorsTrp53 (p53) and its microRNA target, miR-34a-c. We propose that elevated TRP53 and miR-34a-c may exert negatively regulatory effects that reduce the proliferative potential of OSE cells leading to the low-grade serous adenocarcinoma phenotype.
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spelling pubmed-31397852012-02-11 Molecular and Functional Characteristics of Ovarian Surface Epithelial Cells Transformed by KrasG12D and loss of Pten in a Mouse Model in vivo Mullany, Lisa K. Fan, Heng-Yu Liu, Zhilin White, Lisa D. Marshall, Alexandra Gunaratne, Preethi Anderson, Matthew L. Creighton, Chad J. Xin, Li Deavers, Michael Wong, Kwong-Kwok Richards, JoAnne S. Oncogene Article Ovarian cancer is a complex and deadly disease that remains difficult to detect at an early curable stage. Furthermore, although some oncogenic (Kras, Pten/PI3K and Trp53) pathways that are frequently mutated, deleted or amplified in ovarian cancer are known, how these pathways initiate and drive specific morphological phenotypes and tumor outcomes remain unclear. We recently generated Pten (fl/fl); Kras(G12D);Amhr2-Cre mice to disrupt the Pten gene and express a stable mutant form of Kras(G12D) in ovarian surface epithelial (OSE) cells. Based on histopathologic criteria, the mutant mice developed low-grade ovarian serous papillary adenocarcinomas at an early age and with 100% penetrance. This highly reproducible phenotype provides the first mouse model in which to study this ovarian cancer subtype. OSE cells isolated from ovaries of mutant mice at 5 and 10 weeks of age exhibit temporal changes in the expression of specific Mullerian epithelial marker genes, grow in soft agar and develop ectopic invasive tumors in recipient mice, indicating that the cells are transformed. Gene profiling identified specific mRNAs and microRNAs differentially expressed in purified OSE cells derived from tumors of the mutant mice compared to WT OSE cells. Mapping of transcripts or genes between the mouse OSE mutant datasets, the Kras signature from human cancer cell lines and the human ovarian tumor array datasets, documented significant overlap, indicating that KRAS is a key driver of OSE transformation in this context. Two key hallmarks of the mutant OSE cells in these mice are the elevated expression of the tumor suppressorsTrp53 (p53) and its microRNA target, miR-34a-c. We propose that elevated TRP53 and miR-34a-c may exert negatively regulatory effects that reduce the proliferative potential of OSE cells leading to the low-grade serous adenocarcinoma phenotype. 2011-03-21 2011-08-11 /pmc/articles/PMC3139785/ /pubmed/21423204 http://dx.doi.org/10.1038/onc.2011.70 Text en Users may view, print, copy, download and text and data- mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Mullany, Lisa K.
Fan, Heng-Yu
Liu, Zhilin
White, Lisa D.
Marshall, Alexandra
Gunaratne, Preethi
Anderson, Matthew L.
Creighton, Chad J.
Xin, Li
Deavers, Michael
Wong, Kwong-Kwok
Richards, JoAnne S.
Molecular and Functional Characteristics of Ovarian Surface Epithelial Cells Transformed by KrasG12D and loss of Pten in a Mouse Model in vivo
title Molecular and Functional Characteristics of Ovarian Surface Epithelial Cells Transformed by KrasG12D and loss of Pten in a Mouse Model in vivo
title_full Molecular and Functional Characteristics of Ovarian Surface Epithelial Cells Transformed by KrasG12D and loss of Pten in a Mouse Model in vivo
title_fullStr Molecular and Functional Characteristics of Ovarian Surface Epithelial Cells Transformed by KrasG12D and loss of Pten in a Mouse Model in vivo
title_full_unstemmed Molecular and Functional Characteristics of Ovarian Surface Epithelial Cells Transformed by KrasG12D and loss of Pten in a Mouse Model in vivo
title_short Molecular and Functional Characteristics of Ovarian Surface Epithelial Cells Transformed by KrasG12D and loss of Pten in a Mouse Model in vivo
title_sort molecular and functional characteristics of ovarian surface epithelial cells transformed by krasg12d and loss of pten in a mouse model in vivo
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3139785/
https://www.ncbi.nlm.nih.gov/pubmed/21423204
http://dx.doi.org/10.1038/onc.2011.70
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