Substantial evidence has demonstrated a role for the Notch gene family in multiple human cancers, including neoplasms of the lymphoid system, pancreas, breast and CMS, among others. However, the pathophysiological mechanism of Notch function remains poorly understood. The underlying hypothesis of this proposal is that deregulation of the Notch signal transduction pathway drives the neoplastic conversion of cells, playing an important role in both the initiation and maintenance of the transformed state. This transforming activity is an intrinsic property of Notch and Notch mediates its effects through a signaling complex(s). My laboratory has developed in vitro strategies to study the mechanism of action of the mammalian Notch signal transduction pathway in the neoplastic transformation of cells. Research proposed herein is designed to seek a better understanding of the molecular nature of Notch and how activation of Notch subverts the normal physiology of the cell and deregulates growth controls.
Specific aims for this proposal include; structure and function analysis of Notch, characterization of the Notch signaling complex, mechanism of cell cycle regulation and regulation of gene expression by Notch. The long-range goal for these studies is to obtain a comprehensive understanding of how Notch activity transforms cells in order to contribute to the rational design of cancer therapeutics.

Agency
National Institute of Health (NIH)
Institute
National Cancer Institute (NCI)
Type
Research Project (R01)
Project #
7R01CA083736-10
Application #
7576188
Study Section
Cancer Molecular Pathobiology Study Section (CAMP)
Program Officer
Mufson, R Allan
Project Start
1999-12-01
Project End
2011-02-28
Budget Start
2009-03-01
Budget End
2010-02-28
Support Year
10
Fiscal Year
2009
Total Cost
$262,065
Indirect Cost
Name
University of Miami School of Medicine
Department
Surgery
Type
Schools of Medicine
DUNS #
052780918
City
Coral Gables
State
FL
Country
United States
Zip Code
33146
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Bai, Feng; Chan, Ho Lam; Scott, Alexandria et al. (2014) BRCA1 suppresses epithelial-to-mesenchymal transition and stem cell dedifferentiation during mammary and tumor development. Cancer Res 74:6161-72
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Azzam, Diana J; Zhao, Dekuang; Sun, Jun et al. (2013) Triple negative breast cancer initiating cell subsets differ in functional and molecular characteristics and in ?-secretase inhibitor drug responses. EMBO Mol Med 5:1502-22
Licciulli, Silvia; Avila, Jacqueline L; Hanlon, Linda et al. (2013) Notch1 is required for Kras-induced lung adenocarcinoma and controls tumor cell survival via p53. Cancer Res 73:5974-84

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