The proliferation of mammalian cells is a complex process carefully controlled by stimulatory and inhibitory mechanisms. A number of growth regulated genes which may regulate cell proliferation contain within their transcribed sequences or in their flanking regions regulatory elements to which putative suppressor and activator transcriptional factor may bind in a coordinated manner. Genes which control cell proliferation in normal cells are abnormally regulated in leukemic cells, thereby providing leukemic cells with variable degrees of growth advantage over non-leukemic cells. The growth advantage of leukemic cells might be due to the effect of inappropriate binding of cellular factors to regulatory sequences of genes which control cell proliferation in normal cells. The differentiation arrest of leukemic cells may also result from altered regulation of genes which control cell proliferation. Therefore main objectives of this project are to establish if a different binding of nuclear factors to regulatory regions of growth-regulated genes (c-myc,p53, calcyclin) occurs under normal conditions of growth and in leukemia, and if the introduction of constitutively expressed growth regulated genes (c-myc, p53, calcyclin) in myeloid cell lines inhibits their differentiation along the myelomonocytic pathway. These studies should provide insights on the molecular basis of growth advantage and differentiation arrest of leukemic cells.

Agency
National Institute of Health (NIH)
Institute
National Cancer Institute (NCI)
Type
Research Project (R01)
Project #
5R01CA046782-02
Application #
3190172
Study Section
Pathology B Study Section (PTHB)
Project Start
1988-08-01
Project End
1993-05-31
Budget Start
1989-06-01
Budget End
1990-05-31
Support Year
2
Fiscal Year
1989
Total Cost
Indirect Cost
Name
Temple University
Department
Type
Schools of Medicine
DUNS #
City
Philadelphia
State
PA
Country
United States
Zip Code
19122
Fernandes, M J; Iscove, N N; Gingras, G et al. (2000) Identification and characterization of the gene for a novel C-type lectin (CLECSF7) that maps near the natural killer gene complex on human chromosome 12. Genomics 69:263-70
Fernandes, M J; Finnegan, A A; Siracusa, L D et al. (1999) Characterization of a novel receptor that maps near the natural killer gene complex: demonstration of carbohydrate binding and expression in hematopoietic cells. Cancer Res 59:2709-17
Sevignani, C; Cranston, A; Iozzo, R V et al. (1999) Spontaneous and mutagen-induced transformation of primary cultures of Msh2-/- p53-/- colonocytes. Cancer Res 59:5882-6
Nieborowska-Skorska, M; Wasik, M A; Slupianek, A et al. (1999) Signal transducer and activator of transcription (STAT)5 activation by BCR/ABL is dependent on intact Src homology (SH)3 and SH2 domains of BCR/ABL and is required for leukemogenesis. J Exp Med 189:1229-42
Iozzo, R V; Chakrani, F; Perrotti, D et al. (1999) Cooperative action of germ-line mutations in decorin and p53 accelerates lymphoma tumorigenesis. Proc Natl Acad Sci U S A 96:3092-7
Sevignani, C; Wlodarski, P; Kirillova, J et al. (1998) Tumorigenic conversion of p53-deficient colon epithelial cells by an activated Ki-ras gene. J Clin Invest 101:1572-80
Santra, M; Mann, D M; Mercer, E W et al. (1997) Ectopic expression of decorin protein core causes a generalized growth suppression in neoplastic cells of various histogenetic origin and requires endogenous p21, an inhibitor of cyclin-dependent kinases. J Clin Invest 100:149-57
Bellon, T; Perrotti, D; Calabretta, B (1997) Granulocytic differentiation of normal hematopoietic precursor cells induced by transcription factor PU.1 correlates with negative regulation of the c-myb promoter. Blood 90:1828-39
Skorski, T; Nieborowska-Skorska, M; Wlodarski, P et al. (1997) Treatment of Philadelphia leukemia in severe combined immunodeficient mice by combination of cyclophosphamide and bcr/abl antisense oligodeoxynucleotides. J Natl Cancer Inst 89:124-33
Salomoni, P; Perrotti, D; Martinez, R et al. (1997) Resistance to apoptosis in CTLL-2 cells constitutively expressing c-Myb is associated with induction of BCL-2 expression and Myb-dependent regulation of bcl-2 promoter activity. Proc Natl Acad Sci U S A 94:3296-301

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