The matrix metalloproteinase matrilysin has been implicated in the progression of glandular epithelial tumors. Recently, we have determined that ectopic expression of matrilysin in the mammary glands of transgenic mice results in hyperplastic nodules and acceleration in the development of neu-induced tumors. We have determined that E-cadherin and Fas ligand are substrates for matrilysin, and that cleavage of these substrates can have significant effects on cellular proliferation and apoptosis. Matrilysin gene expression can be modulated by cell:cell interactions and is highly response in changes in cellular architecture. Alterations in Wnt signaling, a-catenin levels, and the Rho family of small G proteins have been shown to modulate matrilysin expression. Taken together, we postulate that matrilysin gene expression is a sensitive indicator of tumorigenic signal transduction pathways that monitor epithelial cell environmental conditions. As a consequence of matrilysin induction, the enzyme further changes the extracellular environment, perpetuating the tumorigenic phenotype and contributing to tumor progression. This hypothesis will be tested with particular emphasis on breast cancer and murine models of mammary carcinogenesis through the following specific aims. 1) Extend the in vivo experiments that test the hypothesis that matrilysin is a tumor promoter for breast cancer using transgenic, chimeric, and matrilysin-null mice, 2) Test the hypothesis that matrilysin effects on tumor progression are mediated by cleavage of E-cadherin and Fas ligand. 3) Determine the signal transduction pathways that modulate matrilysin levels in response to changes in cellular architecture as a means of identifying pathways relevant to early-stage breast cancer. These studies will advance our knowledge of the role of matrilysin in breast cancer, guide the therapeutic application of matrilysin inhibitors to breast cancer patients, and aid in identifying rational new therapeutic targets.

Agency
National Institute of Health (NIH)
Institute
National Cancer Institute (NCI)
Type
Research Project (R01)
Project #
5R01CA084360-05
Application #
6688285
Study Section
Pathology B Study Section (PTHB)
Program Officer
Mohla, Suresh
Project Start
2000-01-19
Project End
2004-12-31
Budget Start
2004-01-01
Budget End
2004-12-31
Support Year
5
Fiscal Year
2004
Total Cost
$376,380
Indirect Cost
Name
Vanderbilt University Medical Center
Department
Anatomy/Cell Biology
Type
Schools of Medicine
DUNS #
004413456
City
Nashville
State
TN
Country
United States
Zip Code
37212
Shay, Gemma; Lynch, Conor C; Fingleton, Barbara (2015) Moving targets: Emerging roles for MMPs in cancer progression and metastasis. Matrix Biol 44-46:200-6
Bates, Andreia L; Pickup, Michael W; Hallett, Miranda A et al. (2015) Stromal matrix metalloproteinase 2 regulates collagen expression and promotes the outgrowth of experimental metastases. J Pathol 235:773-83
auf dem Keller, Ulrich; Prudova, Anna; Eckhard, Ulrich et al. (2013) Systems-level analysis of proteolytic events in increased vascular permeability and complement activation in skin inflammation. Sci Signal 6:rs2
Thiolloy, Sophie; Edwards, James R; Fingleton, Barbara et al. (2012) An osteoblast-derived proteinase controls tumor cell survival via TGF-beta activation in the bone microenvironment. PLoS One 7:e29862
Martin, Michelle D; Kremers, Gert-Jan; Short, Kurt W et al. (2010) Rapid extravasation and establishment of breast cancer micrometastases in the liver microenvironment. Mol Cancer Res 8:1319-27
McIntyre, J Oliver; Scherer, Randy L; Matrisian, Lynn M (2010) Near-infrared optical proteolytic beacons for in vivo imaging of matrix metalloproteinase activity. Methods Mol Biol 622:279-304
Thiolloy, Sophie; Halpern, Jennifer; Holt, Ginger E et al. (2009) Osteoclast-derived matrix metalloproteinase-7, but not matrix metalloproteinase-9, contributes to tumor-induced osteolysis. Cancer Res 69:6747-55
McIntyre, J Oliver; Matrisian, Lynn M (2009) Optical proteolytic beacons for in vivo detection of matrix metalloproteinase activity. Methods Mol Biol 539:155-74
Martin, Michelle D; Carter, Kathy J; Jean-Philippe, Sharon R et al. (2008) Effect of ablation or inhibition of stromal matrix metalloproteinase-9 on lung metastasis in a breast cancer model is dependent on genetic background. Cancer Res 68:6251-9
Scherer, Randy L; McIntyre, J Oliver; Matrisian, Lynn M (2008) Imaging matrix metalloproteinases in cancer. Cancer Metastasis Rev 27:679-90

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