Oral cancer begins as a premalignant lesion in which a small nest of dysplastic cells expands while in contact with normal cells. During the recent grant period, unique models were developed which mimic the human mucosal and cutaneous microenvironment in premalignant disease and which showed that direct cell-to-cell contact between neighboring keratinocytes is crucial in controlling the development of invasive cancer from a premalignant lesion. It is known that loss of cell-cell contact mediated by intercellular adhesion is a central factor leading to the progression of advanced cancer and metastasis. However, the role of changes in intercellular adhesion in progression of early neoplasia in stratified epithelium is not clear. The objective of this application is to discover the intercellular pathways, which direct this, control it, or cause it to be lost. Because cadherins and catenins integrate cell adhesion with growth signaling they are excellent molecular candidates to regulate cell-cell interactions in premalignant disease. The experimental plan in this proposal is to perturb cadherins and catenins models of premalignancy and to monitor intraepithelial tumor cell expansion in vitro and invasion in vivo. The Principal Investigator hypothesizes that cadherin/catenin-mediated cell-cell interactions can control premalignancy and that changes in adhesions can activate pathways leading to cancer. He will test if overexpression of E-cadherin (Aim 1) or overexpression of alpha-catenin (Aim 2) will increase adherens junctions and limit neoplastic progression. The Principal Investigator will then determine if decreased adhesive interactions will trigger cancer progression by overexpressing dominant negative forms of E-cadherin (Aim 3) and desmosomal cadherins (Aim 4) to disrupt adherens junctions and desmosomes, respectively. He will test his hypotheses in tissue models, which mimic premalignant human stratified epithelium. Adenoviral vectors will be used to express these exogenous genes in short-term, in vitro studies and retroviral vectors will be used for long-term, in vivo studies using our novel human skin/nude mouse chimera. He expects to find cadherin-catenin-mediated pathways and mechanisms that will drive or arrest early neoplastic progression. This insight will be an important step towards finding new therapies to block premalignant disease progression and prevent cancer.

Agency
National Institute of Health (NIH)
Institute
National Institute of Dental & Craniofacial Research (NIDCR)
Type
Research Project (R01)
Project #
5R01DE011250-09
Application #
6702626
Study Section
Oral Biology and Medicine Subcommittee 1 (OBM)
Program Officer
Shirazi, Yasaman
Project Start
1995-07-01
Project End
2004-10-31
Budget Start
2004-03-01
Budget End
2004-10-31
Support Year
9
Fiscal Year
2004
Total Cost
$162,895
Indirect Cost
Name
State University New York Stony Brook
Department
Dentistry
Type
Schools of Dentistry
DUNS #
804878247
City
Stony Brook
State
NY
Country
United States
Zip Code
11794
Alt-Holland, Addy; Sowalsky, Adam G; Szwec-Levin, Yonit et al. (2011) Suppression of E-cadherin function drives the early stages of Ras-induced squamous cell carcinoma through upregulation of FAK and Src. J Invest Dermatol 131:2306-15
Xylas, Joanna; Alt-Holland, Addy; Garlick, Jonathan et al. (2010) Intrinsic optical biomarkers associated with the invasive potential of tumor cells in engineered tissue models. Biomed Opt Express 1:1387-1400
Segal, Nadav; Andriani, Frank; Pfeiffer, Lawrence et al. (2008) The basement membrane microenvironment directs the normalization and survival of bioengineered human skin equivalents. Matrix Biol 27:163-70
Alt-Holland, Addy; Shamis, Yulia; Riley, Kathleen N et al. (2008) E-cadherin suppression directs cytoskeletal rearrangement and intraepithelial tumor cell migration in 3D human skin equivalents. J Invest Dermatol 128:2498-507
Margulis, Alexander; Zhang, Weitian; Alt-Holland, Addy et al. (2006) Loss of intercellular adhesion activates a transition from low- to high-grade human squamous cell carcinoma. Int J Cancer 118:821-31
Zhang, Weitian; Alt-Holland, Addy; Margulis, Alexander et al. (2006) E-cadherin loss promotes the initiation of squamous cell carcinoma invasion through modulation of integrin-mediated adhesion. J Cell Sci 119:283-91
Margulis, Alexander; Zhang, Weitian; Alt-Holland, Addy et al. (2005) E-cadherin suppression accelerates squamous cell carcinoma progression in three-dimensional, human tissue constructs. Cancer Res 65:1783-91
Andriani, Frank; Margulis, Alexander; Lin, Ning et al. (2003) Analysis of microenvironmental factors contributing to basement membrane assembly and normalized epidermal phenotype. J Invest Dermatol 120:923-31
Margulis, Alexander; Andriani, Frank; Fusenig, Norbert et al. (2003) Abrogation of E-cadherin-mediated adhesion induces tumor cell invasion in human skin-like organotypic culture. J Invest Dermatol 121:1182-90
Kolodka, T M; Garlick, J A; Taichman, L B (1998) Evidence for keratinocyte stem cells in vitro: long term engraftment and persistence of transgene expression from retrovirus-transduced keratinocytes. Proc Natl Acad Sci U S A 95:4356-61