Cargando…

Physiological Levels of Pik3ca (H1047R) Mutation in the Mouse Mammary Gland Results in Ductal Hyperplasia and Formation of ERα-Positive Tumors

PIK3CA, the gene coding for the p110α subunit of phosphoinositide 3-kinase, is frequently mutated in a variety of human tumors including breast cancers. To better understand the role of mutant PIK3CA in the initiation and/or progression of breast cancer, we have generated mice with a conditional kno...

Descripción completa

Detalles Bibliográficos
Autores principales: Tikoo, Anjali, Roh, Vincent, Montgomery, Karen G., Ivetac, Ivan, Waring, Paul, Pelzer, Rebecca, Hare, Lauren, Shackleton, Mark, Humbert, Patrick, Phillips, Wayne A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3364244/
https://www.ncbi.nlm.nih.gov/pubmed/22666336
http://dx.doi.org/10.1371/journal.pone.0036924
_version_ 1782234513496080384
author Tikoo, Anjali
Roh, Vincent
Montgomery, Karen G.
Ivetac, Ivan
Waring, Paul
Pelzer, Rebecca
Hare, Lauren
Shackleton, Mark
Humbert, Patrick
Phillips, Wayne A.
author_facet Tikoo, Anjali
Roh, Vincent
Montgomery, Karen G.
Ivetac, Ivan
Waring, Paul
Pelzer, Rebecca
Hare, Lauren
Shackleton, Mark
Humbert, Patrick
Phillips, Wayne A.
author_sort Tikoo, Anjali
collection PubMed
description PIK3CA, the gene coding for the p110α subunit of phosphoinositide 3-kinase, is frequently mutated in a variety of human tumors including breast cancers. To better understand the role of mutant PIK3CA in the initiation and/or progression of breast cancer, we have generated mice with a conditional knock-in of the common activating mutation, Pik3ca(H1047R), into one allele of the endogenous gene in the mammary gland. These mice developed a ductal anaplasia and hyperplasia by 6 weeks of age characterized by multi-layering of the epithelial lining of the mammary ducts and expansion of the luminal progenitor (Lin(−); CD29(lo); CD24(+); CD61(+)) cell population. The Pik3ca(H1047R) expressing mice eventually develop mammary tumors with 100% penetrance but with a long latency (>12 months). This is significantly longer than has been reported for transgenic models where expression of the mutant Pik3ca is driven by an exogenous promoter. Histological analysis of the tumors formed revealed predominantly ERα-positive fibroadenomas, carcinosarcomas and sarcomas. In vitro induction of Pik3ca(H1047R) in immortalized mammary epithelial cells also resulted in tumor formation when injected into the mammary fat pad of immunodeficient recipient mice. This novel model, which reproduces the scenario of a heterozygous somatic mutation occurring in the endogenous PIK3CA gene, will thus be a valuable tool for investigating the role of Pik3ca(H1047R) mutation in mammary tumorigenesis both in vivo and in vitro.
format Online
Article
Text
id pubmed-3364244
institution National Center for Biotechnology Information
language English
publishDate 2012
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-33642442012-06-04 Physiological Levels of Pik3ca (H1047R) Mutation in the Mouse Mammary Gland Results in Ductal Hyperplasia and Formation of ERα-Positive Tumors Tikoo, Anjali Roh, Vincent Montgomery, Karen G. Ivetac, Ivan Waring, Paul Pelzer, Rebecca Hare, Lauren Shackleton, Mark Humbert, Patrick Phillips, Wayne A. PLoS One Research Article PIK3CA, the gene coding for the p110α subunit of phosphoinositide 3-kinase, is frequently mutated in a variety of human tumors including breast cancers. To better understand the role of mutant PIK3CA in the initiation and/or progression of breast cancer, we have generated mice with a conditional knock-in of the common activating mutation, Pik3ca(H1047R), into one allele of the endogenous gene in the mammary gland. These mice developed a ductal anaplasia and hyperplasia by 6 weeks of age characterized by multi-layering of the epithelial lining of the mammary ducts and expansion of the luminal progenitor (Lin(−); CD29(lo); CD24(+); CD61(+)) cell population. The Pik3ca(H1047R) expressing mice eventually develop mammary tumors with 100% penetrance but with a long latency (>12 months). This is significantly longer than has been reported for transgenic models where expression of the mutant Pik3ca is driven by an exogenous promoter. Histological analysis of the tumors formed revealed predominantly ERα-positive fibroadenomas, carcinosarcomas and sarcomas. In vitro induction of Pik3ca(H1047R) in immortalized mammary epithelial cells also resulted in tumor formation when injected into the mammary fat pad of immunodeficient recipient mice. This novel model, which reproduces the scenario of a heterozygous somatic mutation occurring in the endogenous PIK3CA gene, will thus be a valuable tool for investigating the role of Pik3ca(H1047R) mutation in mammary tumorigenesis both in vivo and in vitro. Public Library of Science 2012-05-30 /pmc/articles/PMC3364244/ /pubmed/22666336 http://dx.doi.org/10.1371/journal.pone.0036924 Text en Tikoo 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
Tikoo, Anjali
Roh, Vincent
Montgomery, Karen G.
Ivetac, Ivan
Waring, Paul
Pelzer, Rebecca
Hare, Lauren
Shackleton, Mark
Humbert, Patrick
Phillips, Wayne A.
Physiological Levels of Pik3ca (H1047R) Mutation in the Mouse Mammary Gland Results in Ductal Hyperplasia and Formation of ERα-Positive Tumors
title Physiological Levels of Pik3ca (H1047R) Mutation in the Mouse Mammary Gland Results in Ductal Hyperplasia and Formation of ERα-Positive Tumors
title_full Physiological Levels of Pik3ca (H1047R) Mutation in the Mouse Mammary Gland Results in Ductal Hyperplasia and Formation of ERα-Positive Tumors
title_fullStr Physiological Levels of Pik3ca (H1047R) Mutation in the Mouse Mammary Gland Results in Ductal Hyperplasia and Formation of ERα-Positive Tumors
title_full_unstemmed Physiological Levels of Pik3ca (H1047R) Mutation in the Mouse Mammary Gland Results in Ductal Hyperplasia and Formation of ERα-Positive Tumors
title_short Physiological Levels of Pik3ca (H1047R) Mutation in the Mouse Mammary Gland Results in Ductal Hyperplasia and Formation of ERα-Positive Tumors
title_sort physiological levels of pik3ca (h1047r) mutation in the mouse mammary gland results in ductal hyperplasia and formation of erα-positive tumors
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3364244/
https://www.ncbi.nlm.nih.gov/pubmed/22666336
http://dx.doi.org/10.1371/journal.pone.0036924
work_keys_str_mv AT tikooanjali physiologicallevelsofpik3cah1047rmutationinthemousemammaryglandresultsinductalhyperplasiaandformationoferapositivetumors
AT rohvincent physiologicallevelsofpik3cah1047rmutationinthemousemammaryglandresultsinductalhyperplasiaandformationoferapositivetumors
AT montgomerykareng physiologicallevelsofpik3cah1047rmutationinthemousemammaryglandresultsinductalhyperplasiaandformationoferapositivetumors
AT ivetacivan physiologicallevelsofpik3cah1047rmutationinthemousemammaryglandresultsinductalhyperplasiaandformationoferapositivetumors
AT waringpaul physiologicallevelsofpik3cah1047rmutationinthemousemammaryglandresultsinductalhyperplasiaandformationoferapositivetumors
AT pelzerrebecca physiologicallevelsofpik3cah1047rmutationinthemousemammaryglandresultsinductalhyperplasiaandformationoferapositivetumors
AT harelauren physiologicallevelsofpik3cah1047rmutationinthemousemammaryglandresultsinductalhyperplasiaandformationoferapositivetumors
AT shackletonmark physiologicallevelsofpik3cah1047rmutationinthemousemammaryglandresultsinductalhyperplasiaandformationoferapositivetumors
AT humbertpatrick physiologicallevelsofpik3cah1047rmutationinthemousemammaryglandresultsinductalhyperplasiaandformationoferapositivetumors
AT phillipswaynea physiologicallevelsofpik3cah1047rmutationinthemousemammaryglandresultsinductalhyperplasiaandformationoferapositivetumors