Wnt signaling activation and mammary gland hyperplasia in MMTV-LRP6 transgenic mice: Implication for breast cancer tumorigenesis

J. Zhang, Y. Li, Q. Liu, W. Lu, G. Bu

Research output: Contribution to journalArticlepeer-review

68 Scopus citations

Abstract

Although Wnt signaling activation is frequently observed in human breast cancer, mutations in genes encoding intracellular components of the Wnt signaling pathway are rare. We found that the expression of Wnt signaling co-receptor, LRP6, is upregulated in a subset of human breast cancer tissues and cell lines. To examine whether the overexpression of LRP6 in mammary epithelial cells is sufficient to activate Wnt signaling and promote cell proliferation, we generated transgenic mice overexpressing LRP6 in mammary epithelial cells driven by the mouse mammary tumor virus (MMTV) promoter. We found that mammary glands from MMTV-LRP6 mice exhibit significant Wnt activation evidenced by the translocation of Β-catenin from membrane to cytoplasmic/nuclear fractions. The expression of several Wnt target genes including Axin2, Cyclin D1 and c-Myc was also increased in MMTV-LRP6 mice. More importantly, mammary glands from virgin MMTV-LRP6 mice exhibit significant hyperplasia, a precursor to breast cancer, when compared with wild-type littermate controls. Several matrix metalloproteinases are upregulated in MMTV-LRP6 mice that could contribute to the hyperplasia phenotype. Our results suggest that Wnt signaling activation at the cell-surface receptor level can contribute to breast cancer tumorigenesis.

Original languageEnglish (US)
Pages (from-to)539-549
Number of pages11
JournalOncogene
Volume29
Issue number4
DOIs
StatePublished - Jan 2010

Keywords

  • Breast cancer
  • LRP6
  • Mammary gland
  • Wnt signaling

ASJC Scopus subject areas

  • Molecular Biology
  • Genetics
  • Cancer Research

Fingerprint

Dive into the research topics of 'Wnt signaling activation and mammary gland hyperplasia in MMTV-LRP6 transgenic mice: Implication for breast cancer tumorigenesis'. Together they form a unique fingerprint.

Cite this