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2.
PLoS Genet ; 5(2): e1000367, 2009 Feb.
Article in English | MEDLINE | ID: mdl-19197353

ABSTRACT

Many components of Wnt/beta-catenin signaling pathway also play critical roles in mammary tumor development, yet the role of the tumor suppressor gene APC (adenomatous polyposis coli) in breast oncongenesis is unclear. To better understand the role of Apc in mammary tumorigenesis, we introduced conditional Apc mutations specifically into two different mammary epithelial populations using K14-cre and WAP-cre transgenic mice that express Cre-recombinase in mammary progenitor cells and lactating luminal cells, respectively. Only the K14-cre-mediated Apc heterozygosity developed mammary adenocarcinomas demonstrating histological heterogeneity, suggesting the multilineage progenitor cell origin of these tumors. These tumors harbored truncation mutation in a defined region in the remaining wild-type allele of Apc that would retain some down-regulating activity of beta-catenin signaling. Activating mutations at codons 12 and 61 of either H-Ras or K-Ras were also found in a subset of these tumors. Expression profiles of acinar-type mammary tumors from K14-cre; Apc(CKO/+) mice showed luminal epithelial gene expression pattern, and clustering analysis demonstrated more correlation to MMTV-neu model than to MMTV-Wnt1. In contrast, neither WAP-cre-induced Apc heterozygous nor homozygous mutations resulted in predisposition to mammary tumorigenesis, although WAP-cre-mediated Apc deficiency resulted in severe squamous metaplasia of mammary glands. Collectively, our results suggest that not only the epithelial origin but also a certain Apc mutations are selected to achieve a specific level of beta-catenin signaling optimal for mammary tumor development and explain partially the colon- but not mammary-specific tumor development in patients that carry germline mutations in APC.


Subject(s)
Adenomatous Polyposis Coli/genetics , Genes, APC , Mammary Neoplasms, Animal/genetics , Animals , Female , Gene Expression Regulation, Neoplastic , Germ-Line Mutation , Integrases/genetics , Integrases/metabolism , Keratin-14/genetics , Keratin-14/metabolism , Mammary Glands, Animal/metabolism , Mammary Neoplasms, Animal/metabolism , Mice , Mice, Knockout , Mice, Transgenic , Milk Proteins/genetics , Milk Proteins/metabolism , Neoplasms/genetics , Signal Transduction , beta Catenin/genetics , beta Catenin/metabolism
3.
PLoS Genet ; 2(9): e146, 2006 Sep 15.
Article in English | MEDLINE | ID: mdl-17002498

ABSTRACT

The tumor suppressor gene Apc (adenomatous polyposis coli) is a member of the Wnt signaling pathway that is involved in development and tumorigenesis. Heterozygous knockout mice for Apc have a tumor predisposition phenotype and homozygosity leads to embryonic lethality. To understand the role of Apc in development we generated a floxed allele. These mice were mated with a strain carrying Cre recombinase under the control of the human Keratin 14 (K14) promoter, which is active in basal cells of epidermis and other stratified epithelia. Mice homozygous for the floxed allele that also carry the K14-cre transgene were viable but had stunted growth and died before weaning. Histological and immunochemical examinations revealed that K14-cre-mediated Apc loss resulted in aberrant growth in many ectodermally derived squamous epithelia, including hair follicles, teeth, and oral and corneal epithelia. In addition, squamous metaplasia was observed in various epithelial-derived tissues, including the thymus. The aberrant growth of hair follicles and other appendages as well as the thymic abnormalities in K14-cre; Apc(CKO/CKO) mice suggest the Apc gene is crucial in embryonic cells to specify epithelial cell fates in organs that require epithelial-mesenchymal interactions for their development.


Subject(s)
Adenomatous Polyposis Coli Protein/metabolism , Skin/growth & development , Thymus Gland/growth & development , Adenomatous Polyposis Coli Protein/deficiency , Adenomatous Polyposis Coli Protein/genetics , Alleles , Animals , Embryo Loss , Embryo, Mammalian/abnormalities , Gene Expression Regulation , Genotype , Hair Follicle/cytology , Hair Follicle/pathology , Hedgehog Proteins/genetics , Humans , Keratins/genetics , Mice , Mice, Inbred C57BL , Mice, Knockout , Mice, Nude , Molecular Sequence Data , Organ Specificity , RNA, Messenger/genetics , RNA, Messenger/metabolism , Skin/embryology , Thymus Gland/embryology , Tooth/cytology , Tooth/pathology , beta Catenin/genetics
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