4.6 Article

c-Jun Induces Mammary Epithelial Cellular Invasion and Breast Cancer Stem Cell Expansion

Journal

JOURNAL OF BIOLOGICAL CHEMISTRY
Volume 285, Issue 11, Pages 8218-8226

Publisher

AMER SOC BIOCHEMISTRY MOLECULAR BIOLOGY INC
DOI: 10.1074/jbc.M110.100792

Keywords

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Funding

  1. National Institutes of Health [R01CA70896, R01CA75503, R01CA107382, R01CA120876]
  2. Dr. Ralph and Marian C. Falk Medical Research Trust
  3. Pennsylvania Department of Health

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The molecular mechanisms governing breast tumor cellular self-renewal contribute to breast cancer progression and therapeutic resistance. The ErbB2 oncogene is overexpressed in similar to 30% of human breast cancers. c-Jun, the first cellular protooncogene, is overexpressed in human breast cancer. However, the role of endogenous c-Jun in mammary tumor progression is unknown. Herein, transgenic mice expressing the mammary gland-targeted ErbB2 oncogene were crossed with c-jun(f/f) transgenic mice to determine the role of endogenous c-Jun in mammary tumor invasion and stem cell function. The excision of c-jun by Cre recombinase reduced cellular migration, invasion, and mammosphere formation of ErbB2-induced mammary tumors. Proteomic analysis identified a subset of secreted proteins (stem cell factor (SCF) and CCL5) induced by ErbB2 expression that were dependent upon endogenous c-Jun expression. SCF and CCL5 were identified as transcriptionally induced by c-Jun. CCL5 rescued the c-Jun-deficient breast tumor cellular invasion phenotype. SCF rescued the c-Jun-deficient mammosphere production. Endogenous c-Jun thus contributes to ErbB2-induced mammary tumor cell invasion and self-renewal.

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