AIB1 (amplified in breast cancer 1) is the only member of the SRC (steroid receptor coactivator) family amplified and overexpressed in many epithelial tumors. AIB1 is rate-limiting for estrogen (E) dependent tumor development but emerging data ascribes an E-independent role for AIB1 whereby AIB1 is rate-limiting for IGF-1, EGF and heregulin-induced transcription & phenotypic changes important for tumor progression. The mechanism(s) of AIB1's potentiation of growth factor signaling is completely unknown. We now report that a rapid increase in tyrosine phosphorylation of AIB1 occurs within minutes of growth factor treatment, paralleled by nuclear translocation and rapid association of AIB1 with cytoplasmic signaling molecule(s), e.g. IRS-1. We hypothesize that tyrosine phosphorylation of AIB1 promotes interactions with critical signaling molecules that initiate nuclear translocation and transcriptional coactivator activity.
Specific Aims :
Aim 1 : To determine the mechanisms and the function of tyrosine phosphorylation of AIB1 due to IGF-1, EGF and Heregulin stimulation of cells. A) We will identify the tyrosine residues phosphorylated in AIB1 after IGF, EGF or Heregulin treatment. B) We will determine the role of these tyrosine residues in AIB1 for: (i) translocation of AIB1 to the nucleus and (ii) transcriptional activity of AIB1. C) We will determine the upstream pathways leading to tyrosine phosphorylation of AIB1 due to IGF-1, EGF and Heregulin stimulation.
Aim 2 : To determine the role of AIB1 in growth factor mediated mammary tumorigenesis. A) We will determine whether gain or loss of AIB1 or AIB1-?3 alters preneoplasia, onset, incidence, metastatic spread and gene expression pattern of mammary adenocarcinoma in MMTV/neuT mice. B) We will determine if AIB1 directly affects IGF-1, EGF or Heregulin pathways by examining signaling in mammary organ culture derived from MMTV/neuT mice with gain or loss of AIB1 or AIB1-??

Agency
National Institute of Health (NIH)
Institute
National Cancer Institute (NCI)
Type
Research Project (R01)
Project #
5R01CA113477-03
Application #
7188086
Study Section
Tumor Microenvironment Study Section (TME)
Program Officer
Sathyamoorthy, Neeraja
Project Start
2005-04-01
Project End
2010-02-28
Budget Start
2007-03-01
Budget End
2008-02-29
Support Year
3
Fiscal Year
2007
Total Cost
$290,637
Indirect Cost
Name
Georgetown University
Department
Internal Medicine/Medicine
Type
Schools of Medicine
DUNS #
049515844
City
Washington
State
DC
Country
United States
Zip Code
20057
Berens, E B; Sharif, G M; Schmidt, M O et al. (2017) Keratin-associated protein 5-5 controls cytoskeletal function and cancer cell vascular invasion. Oncogene 36:593-605
Sharif, G M; Schmidt, M O; Yi, C et al. (2015) Cell growth density modulates cancer cell vascular invasion via Hippo pathway activity and CXCR2 signaling. Oncogene 34:5879-89
Saenz, Francisco R; Ory, Virginie; AlOtaiby, Maram et al. (2014) Conditionally reprogrammed normal and transformed mouse mammary epithelial cells display a progenitor-cell-like phenotype. PLoS One 9:e97666
Ory, V; Tassi, E; Cavalli, L R et al. (2014) The nuclear coactivator amplified in breast cancer 1 maintains tumor-initiating cells during development of ductal carcinoma in situ. Oncogene 33:3033-42
Garee, Jason P; Chien, Christopher D; Li, Jordan V et al. (2014) Regulation of HER2 oncogene transcription by a multifunctional coactivator/corepressor complex. Mol Endocrinol 28:846-59
Li, Jordan V; Chien, Christopher D; Garee, Jason P et al. (2013) Transcriptional repression of AIB1 by FoxG1 leads to apoptosis in breast cancer cells. Mol Endocrinol 27:1113-27
Al-Otaiby, Maram; Tassi, Elena; Schmidt, Marcel O et al. (2012) Role of the nuclear receptor coactivator AIB1/SRC-3 in angiogenesis and wound healing. Am J Pathol 180:1474-84
Liu, Xuefeng; Ory, Virginie; Chapman, Sandra et al. (2012) ROCK inhibitor and feeder cells induce the conditional reprogramming of epithelial cells. Am J Pathol 180:599-607
Chien, Christopher D; Kirilyuk, Alexander; Li, Jordan V et al. (2011) Role of the nuclear receptor coactivator AIB1-Delta4 splice variant in the control of gene transcription. J Biol Chem 286:26813-27
Hu, Zhang-Zhi; Kagan, Benjamin L; Ariazi, Eric A et al. (2011) Proteomic analysis of pathways involved in estrogen-induced growth and apoptosis of breast cancer cells. PLoS One 6:e20410

Showing the most recent 10 out of 14 publications