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Interleukin-2 triggers a novel phosphatidylinositol 3-kinase-dependent MEK activation pathway
L M Karnitz1, L A Burns, S L Sutor
1Department of Immunology, Mayo Clinic and Foundation, Rochester, Minnesota 55905, USA.
Abstract:
Phosphatidylinositol 3-kinase (PI3-K) has been implicated as a signal-transducing component in interleukin-2 (IL-2)-induced mitogenesis. However, the function of this lipid kinase in regulating IL-2-triggered downstream events has remained obscure. Using the potent and specific PI3-K inhibitor, wortmannin, we assessed the role of PI3-K in IL-2-mediated signaling and proliferation in the murine T-cell line CTLL-2. Addition of the drug to exponentially growing cells resulted in an accumulation of cells in the G0/G1 phase of the cell cycle. Furthermore, wortmannin also partially suppressed IL-2-induced S-phase entry in G1-synchronized cells. Analysis of IL-2-triggered signaling pathways revealed that wortmannin pretreatment resulted in complete inhibition of IL-2-provoked p70 S6 kinase activation and also attenuated IL-2-induced MAP kinase activation at drug concentrations identical to those required for inhibition of PI3-K catalytic activity. Wortmannin also diminished the IL-2-triggered activation of the MAP kinase activator, MEK, but did not inhibit activation of Raf, the canonical upstream activator of MEK. These results suggest that a novel wortmannin-sensitive activation pathway regulates MEK and MAP kinase in IL-2-stimulated T lymphocytes.
Insights
Phosphatidylinositol 3-kinase (PI3-K) is crucial for interleukin-2 (IL-2) signaling. Inhibiting PI3-K with wortmannin blocks cell cycle progression and key signaling pathways like p70 S6 kinase and MAP kinase.
Area of Science:
- Immunology
- Cell Biology
- Biochemistry
Background:
- Phosphatidylinositol 3-kinase (PI3-K) is involved in interleukin-2 (IL-2)-induced cell growth.
- The precise role of PI3-K in IL-2 signaling pathways remains unclear.
Purpose of the Study:
- To investigate the function of PI3-K in IL-2-mediated signaling and proliferation.
- To elucidate the downstream signaling events regulated by PI3-K in T lymphocytes.
Main Methods:
- Utilized the specific PI3-K inhibitor, wortmannin, in the murine T-cell line CTLL-2.
- Assessed cell cycle progression using flow cytometry.
- Analyzed the activation of signaling proteins including p70 S6 kinase, MAP kinase, MEK, and Raf.
Main Results:
- Wortmannin treatment caused cell accumulation in the G0/G1 phase and partially inhibited entry into S-phase.
- PI3-K inhibition completely blocked IL-2-induced p70 S6 kinase activation.
- Wortmannin attenuated IL-2-induced MAP kinase and MEK activation, but not Raf activation.
Conclusions:
- PI3-K plays a significant role in regulating IL-2-driven cell cycle progression.
- A novel wortmannin-sensitive pathway, distinct from Raf activation, regulates MEK and MAP kinase in IL-2-stimulated T cells.