BALB/c-3T3 fibroblasts resistant to growth inhibition by beta interferon exhibit aberrant platelet-derived growth factor, epidermal growth factor, and fibroblast growth factor signal transduction.
Open Access
- 1 June 1991
- journal article
- Published by Taylor & Francis in Molecular and Cellular Biology
- Vol. 11 (6) , 3148-3154
- https://doi.org/10.1128/mcb.11.6.3148
Abstract
Several lines of evidence now exist to suggest an interaction between the platelet-derived growth factor (PDGF) growth-stimulatory signal transduction pathway and the beta interferon (IFN-beta) growth-inhibitory signal transduction pathway. The most direct examples are inhibition of PDGF-mediated gene induction and mitogenesis by IFN-beta and the effects of activators and inhibitors of the IFN-inducible double-stranded RNA-dependent eIF2 kinase on expression of PDGF-inducible genes. To further investigate the nature of this PDGF/IFN-beta interaction, we selected BALB/c-3T3 cells for resistance to growth inhibition by IFN-beta and analyzed the phenotypes of resulting clonal lines (called IRB cells) with respect to PDGF signal transduction. Although selected only for IFN resistance, the IRB cells were found to be defective for induction of growth-related genes c-fos, c-myc and JE in response to PDGF. This block to signal transduction was not due to loss or inactivation of PDGF receptors, as immunoprecipitation of PDGF receptors with antiphosphotyrosine antibodies showed them to be present at equal levels in the BALB/c-3T3 and IRB cells and to be autophosphorylated normally in response to PDGF. Furthermore, treatment with other peptide growth factors (PDGF-AA, fibroblast growth factor, and epidermal growth factor) also failed to induce c-fos, c-myc, or JE expression in IRB cells. All of these growth factors, however, were able to induce another early growth-related gene, Egr-1. The block to signaling was not due to a defect in inositol phosphate metabolism, as PDGF treatment induced normal calcium mobilization and phosphotidylinositol-3-kinase activation in these cells. Activation of protein kinase C by phorbol esters did induce c-fos, c-myc, and JE in IRB cells, indicating that signalling pathways distal to this enzyme remained intact. We have previously shown that IFN-inducible enzyme activities, including double-stranded RNA-dependent eIF2 kinase and 2',5'-oligoadenylate synthetase, are normal in IRB cells. The finding that the induction of multiple growth-related genes by several independent growth factors is inhibited in these IFN-resistant cells suggests that there is a second messenger common to both growth factor and IFN signaling pathways and that this messenger is defective in these cells.Keywords
This publication has 23 references indexed in Scilit:
- Cyclic AMP can partially restore platelet‐derived growth factor‐stimulated prostaglandin E2 biosynthesis, and calcium mobilization in EJ‐ras‐transformed NIH‐3T3 cellsJournal of Cellular Physiology, 1989
- Role of Na + /H + Exchange by Interferon-γ in Enhanced Expression of JE and I-A β GenesScience, 1989
- P21 v-ras inhibits induction of c-myc and c-fos expression by platelet-derived growth factor.Molecular and Cellular Biology, 1988
- Inhibition of mitogenic activity of PDGF, EGF, and FGF by interferon-?Experimental Cell Research, 1988
- Effect on platelet-derived growth factor-induced mitogenesis of double-stranded RNA: Evidence for an autocrine growth inhibition mediated by interferon-?Journal of Cellular Physiology, 1988
- A zinc finger-encoding gene coregulated with c-fos during growth and differentiation, and after cellular depolarizationCell, 1988
- Autocrine β-related interferon controls c-myc suppression and growth arrest during hematopoietic cell differentiationCell, 1986
- Antiviral and antiproliferative effects of interferons in quiescent fibroblasts are dissociableVirology, 1985
- Platelet-derived growth factor and double-stranded ribonucleic acids stimulate expression of the same genes in 3T3 cellsCell, 1985
- A technique for radiolabeling DNA restriction endonuclease fragments to high specific activityAnalytical Biochemistry, 1983