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Identification of Intracellular Signaling Events Induced in Viable Cells by Interaction with Neighboring Cells Undergoing Apoptotic Cell Death
Published on: December 27, 2016
IL-3 induces apoptosis in a ras-transformed myeloid cell line
N Ahmed1, S M Anderson, M V Berridge
1Malaghan Institute of Medical Research, PO Box 7060, Wellington South, New Zealand.
Abstract:
Growth factors promote cell survival and proliferation. Homeostasis is maintained by programmed cell death which occurs when the growth stimulus is withdrawn, in response to negative growth regulators such as interferons, TNF-alpha and CD95 ligand, or following differentiation. Although acutely-transforming oncogenes often overcome the need for growth factors, growth regulatory cytokines can influence proliferative responses of transformed cells. In this study we investigated the effects of IL-3 on the proliferative responses of parental bone marrow-derived 32D cells and cells transformed with ras and abl oncogenes. We show that treatment of ras-transformed 32D cells with IL-3 reduced proliferative responses and decreased colony-forming ability. These effects were exacerbated in the absence of serum and associated with inhibition of tyrosine kinase activity, down-regulation of RAS and MYC expression, and induction of apoptosis as indicated by DNA fragmentation. In contrast, treatment of parental 32D cells with IL-3, which is obligatory for cell survival and proliferation, increased tyrosine kinase activity, upregulated MYC and RAS expression and maintained DNA integrity. With abl-transformed cells, proliferation and colony-forming ability were also inhibited by IL-3. Tyrosine kinase activity and MYC expression were reduced, but early apoptosis was not evident. Calcium uptake however, was stimulated by IL-3 in both parental and oncogene-transformed cells. These results suggest that threshold levels of tyrosine kinase activity are necessary for cell survival and proliferation and that with ras-transformed cells, IL-3 treatment may result in this threshold being breached. We conclude that in some situations, growth-promoting cytokines can inhibit proliferation of transformed cells and induce cell death by apoptosis.
Insights
Interleukin-3 (IL-3) can paradoxically inhibit proliferation and induce apoptosis in ras- and abl-transformed cells, despite promoting growth in normal cells. This suggests cytokines can suppress cancer cell growth by breaching critical survival signaling thresholds.
Area of Science:
- Cell Biology
- Molecular Oncology
- Cancer Research
Background:
- Cellular homeostasis relies on a balance between growth factors promoting survival and programmed cell death (apoptosis).
- While oncogenes can override growth factor dependence, cytokines can still modulate transformed cell proliferation.
- Interleukin-3 (IL-3) is a key cytokine for normal hematopoietic cell survival and proliferation.
Purpose of the Study:
- To investigate the impact of IL-3 on the proliferative responses of normal 32D cells and those transformed with ras and abl oncogenes.
- To elucidate the molecular mechanisms underlying IL-3's effects on transformed cell growth and survival.
Main Methods:
- Culturing of parental 32D cells and ras- or abl-transformed 32D cells.
- Treatment with IL-3 under varying serum conditions.
- Assessment of cell proliferation, colony-forming ability, tyrosine kinase activity, gene expression (RAS, MYC), DNA fragmentation (apoptosis), and calcium uptake.
Main Results:
- IL-3 reduced proliferation and colony formation in ras-transformed cells, associated with decreased tyrosine kinase activity, RAS/MYC downregulation, and apoptosis induction.
- IL-3 inhibited proliferation and colony formation in abl-transformed cells, reducing tyrosine kinase activity and MYC expression, but without evident early apoptosis.
- IL-3 stimulated calcium uptake in both parental and oncogene-transformed cells.
Conclusions:
- Growth-promoting cytokines like IL-3 can inhibit proliferation and induce apoptosis in certain oncogene-transformed cells.
- Threshold levels of tyrosine kinase activity are crucial for cell survival; IL-3 may disrupt this balance in transformed cells.
- These findings highlight a potential therapeutic avenue where cytokines could suppress cancer cell growth.
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