The Philadelphia (Ph') chromosome is an abnormal chromosome 22 generated by a recombination event between chromosome 22 and 9; it is found in the leukemic cells of over 95% of all chronic myelogenous leukemia (CML) patients and is diagnostic for the disease. A significant percentage of acute lymphocytic leukemia (ALL) patients also have a Ph'-chromosome in their leukemic cells. In CML, the c-abl oncogene (ABL) is located at the breakpoint on chromosome 9 and the bcr gene at the breakpoint on chromosome 22; breakpoints in the bcr gene are distributed over a region of less than 5.8 kb, the """"""""breakpoint cluster region"""""""" (bcr). However, in Ph'-positive ALL, not all patients have a breakpoint within this region of chromosome 22. The major objectives of this project are the identification and characterization of the breakpoints on chromosome 22 in those Ph'-positive ALL patients lacking a breakpoint in the bcr. To this end, a large number of Ph'-positive ALL DNAs will be examined with probes from the bcr by Southern blot analysis; those DNAs lacking a bcr breakpoint will be examined more closely; the 5' region of the bcr gene will be cloned and characterized; repeat- free probes will be used to identify breakpoints 5' in the gene and to clone the breakpoint fragments of at least one patient. The possibility of clustering of breakpoints 5' within the gene in different DNAs will be examined by Southern blot analysis. If specimens are found with a breakpoint outside the bcr gene, the breakpoint sequences on chromosome 22 will be identified using a cDNA cloning strategy: cDNA libraries constructed from poly(A)+ RNA of these patients will be screened with an ABL probe and putative chimeric cDNAs will be identified by restriction enzyme analysis. These experiments should provide insight into the possible role of the Philadelphia chromosome and of ABL in the genesis and/or maintenance of Ph'-positive ALL. In addition, the proposed research might shed light on the molecular significance of the bcr part of the bcr/ ABL protein, which represents the hallmark of CML.

Agency
National Institute of Health (NIH)
Institute
National Cancer Institute (NCI)
Type
Research Project (R01)
Project #
5R01CA047073-03
Application #
3190543
Study Section
Mammalian Genetics Study Section (MGN)
Project Start
1988-05-01
Project End
1992-04-30
Budget Start
1990-05-01
Budget End
1992-04-30
Support Year
3
Fiscal Year
1990
Total Cost
Indirect Cost
Name
Children's Hospital of Los Angeles
Department
Type
DUNS #
094878337
City
Los Angeles
State
CA
Country
United States
Zip Code
90027
Catalina, Fernando; Milewich, Leon; Frawley, William et al. (2002) Decrease of core body temperature in mice by dehydroepiandrosterone. Exp Biol Med (Maywood) 227:382-8
Catalina, F; Speciale, S G; Kumar, V et al. (2001) Food restriction-like effects of dietary dehydroepiandrosterone. Hypothalamic neurotransmitters and metabolites in male C57BL/6 and (C57BL/6 x DBA/2)F1 mice. Exp Biol Med (Maywood) 226:208-15
Catalina, F; Kumar, V; Milewich, L et al. (1999) Food restriction-like effects of dehydroepiandrosterone: decreased lymphocyte numbers and functions with increased apoptosis. Proc Soc Exp Biol Med 221:326-35
Voncken, J W; Griffiths, S; Greaves, M F et al. (1992) Restricted oncogenicity of BCR/ABL p190 in transgenic mice. Cancer Res 52:4534-9
Voncken, J W; Morris, C; Pattengale, P et al. (1992) Clonal development and karyotype evolution during leukemogenesis of BCR/ABL transgenic mice. Blood 79:1029-36
Groffen, J; Voncken, J W; van Schaick, H et al. (1992) Animal models for chronic myeloid leukemia and acute lymphoblastic leukemia. Leukemia 6 Suppl 1:44-6
Griffiths, S D; Healy, L E; Ford, A M et al. (1992) Clonal characteristics of acute lymphoblastic cells derived from BCR/ABL p190 transgenic mice. Oncogene 7:1391-9
Laneuville, P; Heisterkamp, N; Groffen, J (1991) Expression of the chronic myelogenous leukemia-associated p210bcr/abl oncoprotein in a murine IL-3 dependent myeloid cell line. Oncogene 6:275-82
Heisterkamp, N; Jenster, G; Kioussis, D et al. (1991) Human bcr-abl gene has a lethal effect on embryogenesis. Transgenic Res 1:45-53
Morris, C M; Heisterkamp, N; Groffen, J et al. (1991) Entire ABL gene is joined with 5'-BCR in some patients with Philadelphia-positive leukemia. Blood 78:1078-84

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