The overall purpose of this research program is to analyze the functional significance of oncogenes and tumor suppressor (TS) genes in human cancer. These two classes of gene are frequently altered during neoplastic progression, but the functional significance of these changes for human cancer is poorly understood. In particular, the claims for dominantly-acting oncogenes and their critical role in neoplastic conversion was derived from data obtained from rodent experimental systems. These claims have not been substantiated when human experimental model systems have been utilized. Four major aims are presented: 1) The molecular characterization of the QM gene - a highly conserved member of a multiple gene family which is a strong candidate for a tumor suppressor gene. Studies include characterization of the protein product, characterization of its properties as a transcription factor that interacts with c-jun, and analysis of its potential tumor suppressor function. 2) Transgenic mouse studies of the QM gene. These include the consequences of overexpression of human QM, both constitutively and tissue-specific, and targeted knockout of the mouse QM gene, thereby generating QM-deficient mice. These studies should shed insight into the role of QM in development, differentiation and cancer. 3) Continuation of our Wilms' tumor studies. We have expanded our in vitro models to include other bona fide Wilms' tumor cell lines. The functional roles of several candidate Wilms' tumor TS genes, namely WT1, QM and H19, will be examined. in addition, we continue to collaborate with Dr. Bernard Weissman in cloning the WT2 gene that maps to chromosome 11p15. 4) Continuation of our colorectal cancer studies. We will extend our studies on the functional role of APC, DCC and p53 cDNAs in controlling the tumorigenic phenotype of colorectal carcinoma cell lines as well as determining the possible functional consequences of restoring wild type expression of multiple TS genes. We continue to explore the interesting possibility that APC may regulate c-myc expression and the consequences of that on control of cell proliferation. Finally, we have initiated functional analyses of mismatch repair genes, with specific reference to the recessive or dominant-negative nature of these mutations and the result of restoring wild type activity on the transformed and tumorigenic phenotypes.

Agency
National Institute of Health (NIH)
Institute
National Cancer Institute (NCI)
Type
Research Project (R01)
Project #
5R01CA019401-24
Application #
2894470
Study Section
Pathology B Study Section (PTHB)
Program Officer
Mietz, Judy
Project Start
1976-06-30
Project End
2001-03-31
Budget Start
1999-04-20
Budget End
2001-03-31
Support Year
24
Fiscal Year
1999
Total Cost
Indirect Cost
Name
University of California Irvine
Department
Microbiology/Immun/Virology
Type
Schools of Medicine
DUNS #
161202122
City
Irvine
State
CA
Country
United States
Zip Code
92697
Liao, S-Y; Ivanov, S; Ivanova, A et al. (2003) Expression of cell surface transmembrane carbonic anhydrase genes CA9 and CA12 in the human eye: overexpression of CA12 (CAXII) in glaucoma. J Med Genet 40:257-61
Kaluz, Stefan; Kaluzova, Milota; Chrastina, Adrian et al. (2002) Lowered oxygen tension induces expression of the hypoxia marker MN/carbonic anhydrase IX in the absence of hypoxia-inducible factor 1 alpha stabilization: a role for phosphatidylinositol 3'-kinase. Cancer Res 62:4469-77
Cheng, Yue; Chakrabarti, Rita; Garcia-Barcelo, Merce et al. (2002) Mapping of nasopharyngeal carcinoma tumor-suppressive activity to a 1.8-megabase region of chromosome band 11q13. Genes Chromosomes Cancer 34:97-103
Srivatsan, Eri S; Chakrabarti, Rita; Zainabadi, Kayvan et al. (2002) Localization of deletion to a 300 Kb interval of chromosome 11q13 in cervical cancer. Oncogene 21:5631-42
Ivanov, S; Liao, S Y; Ivanova, A et al. (2001) Expression of hypoxia-inducible cell-surface transmembrane carbonic anhydrases in human cancer. Am J Pathol 158:905-19
Kong, X T; Gao, H; Stanbridge, E J (2001) Mechanisms of differential activation of target gene promoters by p53 hinge domain mutants with impaired apoptotic function. J Biol Chem 276:32990-3000
Kaluzova, M; Pastorekova, S; Svastova, E et al. (2001) Characterization of the MN/CA 9 promoter proximal region: a role for specificity protein (SP) and activator protein 1 (AP1) factors. Biochem J 359:669-77
Tsujimoto, H; Nishizuka, S; Redpath, L J et al. (2001) Examination of the oncogenic potential of H19 gene in HeLa x normal human fibroblast hybrid cells. Int J Oncol 19:89-95
Olive, P L; Aquino-Parsons, C; MacPhail, S H et al. (2001) Carbonic anhydrase 9 as an endogenous marker for hypoxic cells in cervical cancer. Cancer Res 61:8924-9
Liao, S Y; Stanbridge, E J (2000) Expression of MN/CA9 protein in Papanicolaou smears containing atypical glandular cells of undetermined significance is a diagnostic biomarker of cervical dysplasia and neoplasia. Cancer 88:1108-21

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