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Multiple signal transduction pathways mediate interleukin-4-induced 3beta-hydroxysteroid dehydrogenase/Delta5-Delta4
1Laboratory of Hereditary Cancers, Oncology and Molecular Endocrinology Research Center, CHUL Research Center and Laval University, 2705 Laurier Blvd, Quebec, G1V 4G2, Quebec City, Canada.
Abstract:
The 3beta-hydroxysteroid dehydrogenase/Delta5-Delta4 isomerase (3beta-HSD) isoenzymes catalyze an essential step in the formation of all classes of active steroid hormones. We have recently shown that 3beta-HSD type 1 gene expression is specifically induced by interleukin (IL)-4 and IL-13 in several human cancer cell lines and in normal human mammary and prostatic epithelial cells in primary culture. There is evidence that IL-4 stimulates bifurcating signaling pathways in which the Stat6-signal pathway is involved in differentiation and gene regulation, whereas insulin receptor substrate (IRS) proteins mediate the mitogenic action of IL-4. As a matter of fact, we have shown that IL-4-activated Stat6 in all cell lines studied, where IL-4 induced 3beta-HSD type 1 expression but not in those cell lines that failed to respond to IL-4. The mechanism of the induction of 3beta-HSD type 1 gene expression was further characterized in ZR-75-1 human breast cancer cells. We have also found that IL-4 rapidly induced IRS-1 and IRS-2 phosphorylation in these cell lines. Moreover, insulin-like growth factor (IGF)-1 and insulin, which are well known to cause IRS-1 and IRS-2 phosphorylation, increased the stimulatory effect of IL-4 on 3beta-HSD activity. IRS-1 and IRS-2 are adapter molecules that provide docking sites for different SH2 domain-containing proteins, leading to the activation of multiple pathways, such as the phosphatidylinositol (PI) 3-kinase and the mitogen-activated protein (MAP) pathways. The inhibition of IL-4-induced 3beta-HSD expression by PI 3-kinase inhibitors (wortmannin and LY294002) as well as an inhibitor of MAP kinase activation (PD98059), indicates the involvement of those pathways in this response to IL-4. Wortmannin also blocked MAP kinase activation by IL-4, insulin and IGF-1 suggesting that the MAP kinase cascade acts as a downstream effector of PI 3-kinases. Furthermore, we showed that the PKC activator phorbol-12-myristate-13-acetate (PMA) also potentiated the IL-4-induced 3beta-HSD activity, thus suggesting that one signaling molecule that is involved in the signal transduction of the IL-4 action on 3beta-HSD type 1 expression is also a substrate for PKC. Taken together, these findings suggest the existence of a novel mechanism of gene regulation by IL-4. This mechanism would involve in the phosphorylation of IRS-1 and IRS-2, which transduce the IL-4 signal through a PI 3-kinase- and MAP kinase-dependent signaling pathway. However, the inability of IGF-1, insulin and PMA to stimulate 3beta-HSD type 1 expression by themselves in the absence of IL-4 indicates that the multiple pathways downstream of IRS-1 and IRS-2 must act in cooperation with an IL-4-specific signaling molecule, such as the transcription factor Stat6. It is also of interest to note that there also appear to be differences between the regulation of the 3beta-HSD type 1 and type 2 promoters.
Insights
Interleukin-4 (IL-4) induces 3beta-hydroxysteroid dehydrogenase/Delta5-Delta4 isomerase (3beta-HSD) type 1 gene expression via insulin receptor substrate (IRS) proteins and PI 3-kinase/MAP kinase pathways, cooperating with Stat6. This reveals a novel IL-4 gene regulation mechanism in steroid hormone synthesis.
Area of Science:
- Endocrinology and Molecular Biology
- Steroid Hormone Synthesis
- Signal Transduction Pathways
Background:
- 3beta-hydroxysteroid dehydrogenase/Delta5-Delta4 isomerase (3beta-HSD) is crucial for steroid hormone production.
- Interleukin-4 (IL-4) and IL-13 induce 3beta-HSD type 1 gene expression in various human cells.
- IL-4 signaling involves Stat6 for differentiation/gene regulation and insulin receptor substrate (IRS) proteins for mitogenesis.
Purpose of the Study:
- To elucidate the molecular mechanism by which IL-4 induces 3beta-HSD type 1 gene expression.
- To investigate the roles of IRS proteins, PI 3-kinase, and MAP kinase pathways in IL-4-mediated 3beta-HSD type 1 induction.
- To identify potential cooperating signaling molecules in IL-4-induced gene regulation.
Main Methods:
- Characterization of 3beta-HSD type 1 gene expression induction in ZR-75-1 human breast cancer cells.
- Assessment of IL-4-induced phosphorylation of IRS-1 and IRS-2.
- Inhibition studies using PI 3-kinase inhibitors (wortmannin, LY294002) and a MAP kinase inhibitor (PD98059).
- Evaluation of the effects of insulin, IGF-1, and PMA on IL-4-induced 3beta-HSD activity.
Main Results:
- IL-4 rapidly induced IRS-1 and IRS-2 phosphorylation.
- PI 3-kinase and MAP kinase pathways are involved in IL-4-induced 3beta-HSD expression; MAP kinase acts downstream of PI 3-kinase.
- Insulin, IGF-1, and PMA potentiated IL-4's effect but did not induce 3beta-HSD expression independently, suggesting cooperation with IL-4-specific factors like Stat6.
Conclusions:
- A novel IL-4 gene regulation mechanism for 3beta-HSD type 1 involves IRS-1/IRS-2 phosphorylation, transducing signals via PI 3-kinase and MAP kinase pathways.
- Stat6 likely cooperates with these pathways, acting as an IL-4-specific signaling molecule for 3beta-HSD type 1 expression.
- Potential differences exist in the regulation of 3beta-HSD type 1 and type 2 promoters.