The lymphokine interleukin-2 (IL2) is a critical regulator of lymphocyte growth and immune responses, and is beginning to find clinical uses for the treatment of cancer and immune disorders. Greater knowledge of the molecular mechanisms of IL2signal transduction, therefore, could ultimately contribute to improved pharmacological manipulation of in vivo immune responses or modulation of lymphoma and leukemic cell growth. Despite cloning of IL2 and its receptor genes and extensive investigations using a variety of approaches, little is known about the mechanisms of IL2-signal transduction. Unlike many other growth factor receptors, the IL2-binding molecules on lymphocytes lack tyrosine-kinase activity, and yet both tyrosine and serine/ threonine phosphorylation of intracellular proteins are rapid events in IL2-stimulated T-cells. Clearly, therefore, IL2 and its receptor must regulate the activity of kinases in lymphocytes. Recently, we have found that IL2 induces tyrosine phosphorylation and elevated activity of the RAF-1 kinase, a serine-threonine-specific kinase with homology to the transforming gene of MSV-3611 retrovirus. This kinase has been implicated previously in the regulation of mitogenesis and malignant transformation in several types of cells, including lymphocytes. We will explore the mechanisms responsible for phosphorylation and activation of the RAF-1 kinase in IL2-stimulated T-cells. Further we will investigate the effects of this kinase on the regulation of T-cell growth. These studies will contribute to an improved understanding of the intracellular mechanisms of IL2 action, and may provide insights into the growth factor/oncogene networks involved in the development and progression of leukemias and lymphomas.

Agency
National Institute of Health (NIH)
Institute
National Cancer Institute (NCI)
Type
Research Project (R01)
Project #
5R01CA054957-03
Application #
3199413
Study Section
Experimental Immunology Study Section (EI)
Project Start
1991-07-01
Project End
1994-06-30
Budget Start
1993-07-01
Budget End
1994-06-30
Support Year
3
Fiscal Year
1993
Total Cost
Indirect Cost
Name
Sanford-Burnham Medical Research Institute
Department
Type
DUNS #
009214214
City
La Jolla
State
CA
Country
United States
Zip Code
92037
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Clevenger, C V; Torigoe, T; Reed, J C (1994) Prolactin induces rapid phosphorylation and activation of prolactin receptor-associated RAF-1 kinase in a T-cell line. J Biol Chem 269:5559-65
Wang, H G; Miyashita, T; Takayama, S et al. (1994) Apoptosis regulation by interaction of Bcl-2 protein and Raf-1 kinase. Oncogene 9:2751-6
Torigoe, T; Millan, J A; Takayama, S et al. (1994) Bcl-2 inhibits T-cell-mediated cytolysis of a leukemia cell line. Cancer Res 54:4851-4
Taichman, R S; Torigoe, T; Reed, J C (1993) A strategy for constructing inducible expression plasmids for T-lymphocytes. Biotechniques 14:180-2
Taichman, R; Merida, I; Torigoe, T et al. (1993) Evidence that protein tyrosine kinase p56-Lck regulates the activity of phosphatidylinositol-3'-kinase in interleukin-2-dependent T-cells. J Biol Chem 268:20031-6
Turner, B C; Tonks, N K; Rapp, U R et al. (1993) Interleukin 2 regulates Raf-1 kinase activity through a tyrosine phosphorylation-dependent mechanism in a T-cell line. Proc Natl Acad Sci U S A 90:5544-8
Reed, J C; Torigoe, T; Turner, B C et al. (1993) Protooncogene-encoded protein kinases in interleukin-2 signal transduction. Semin Immunol 5:327-36
Torigoe, T; O-Connor, R; Fagard, R et al. (1992) Regulation of SRC-family protein tyrosine kinases by interleukins, IL-2, and IL-3. Leukemia 6 Suppl 3:94S-97S
Torigoe, T; O'Connor, R; Santoli, D et al. (1992) Interleukin-3 regulates the activity of the LYN protein-tyrosine kinase in myeloid-committed leukemic cell lines. Blood 80:617-24

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