Diliberto P A, Bernacki S H, Herman B
Department of Cell Biology and Anatomy, School of Medicine, University of North Carolina, Chapel Hill 27599.
J Cell Biochem. 1990 Sep;44(1):39-53. doi: 10.1002/jcb.240440104.
Both increases in c-fos proto-oncogene expression and intracellular free calcium ([Ca2+]i) have been implicated as necessary components of the signal transduction pathway by which platelet-derived growth factor (PDGF) stimulates DNA synthesis in cultured BALB/c3T3 fibroblasts. To determine the interrelationship between PDGF-induced increases in c-fos proto-oncogene expression and [Ca2+]i, purified, recombinant BB and AA homodimeric isoforms of PDGF were used to evaluate the dose-response relationships and mechanisms of growth factor-induced changes in these two parameters as well as DNA synthesis. Concentration-dependent increases in [Ca2+]i, c-fos expression, and [3H]thymidine incorporation were observed with both BB and AA PDGF isoforms. BB PDGF was consistently more potent and efficacious than the AA isoform in eliciting a given response. The [Ca2+]i dependency of PDGF-induced increases in c-fos expression and DNA synthesis was determined by pretreatment of cells with agents that inhibit increases in [Ca2+]i: BAPTA, Quin-2, and TMB-8. Under these conditions, PDGF-induced DNA synthesis was blocked, whereas c-fos expression was enhanced. Conversely, in cells made deficient in protein kinase C (PKC) activity by prolonged treatment with phorbol ester, BB and AA PDGF-induced c-fos expression was inhibited by 75-80%, while PDGF-induced increases in [Ca2+]i and DNA synthesis were unaffected or enhanced. Additionally, the PKC-independent component of PDGF-stimulated c-fos expression was found to be independent of increases in [Ca2+]i. These data suggest that 1) both BB and AA PDGF isoforms elicit alterations in [Ca2+]i and c-fos proto-oncogene expression through the same or similar mechanisms in BALB/c3T3 fibroblasts, 2) PDGF-stimulated increases in [Ca2+]i are not required for c-fos expression, and 3) distinct pathways regulate PDGF-induced c-fos expression and mitogenesis, with c-fos expression being substantially PKC-dependent yet [Ca2+]i-independent, while mitogenesis is [Ca2+]i-dependent yet PKC-independent.
c-fos原癌基因表达的增加和细胞内游离钙([Ca2+]i)均被认为是血小板衍生生长因子(PDGF)刺激培养的BALB/c3T3成纤维细胞中DNA合成的信号转导途径的必要组成部分。为了确定PDGF诱导的c-fos原癌基因表达增加与[Ca2+]i之间的相互关系,使用纯化的重组PDGF BB和AA同型二聚体来评估这两个参数以及DNA合成中生长因子诱导变化的剂量反应关系和机制。观察到BB和AA PDGF同型二聚体均引起[Ca2+]i、c-fos表达和[3H]胸苷掺入的浓度依赖性增加。在引发给定反应方面,BB PDGF始终比AA同型二聚体更有效力和效能。通过用抑制[Ca2+]i增加的试剂(BAPTA、喹啉-2和TMB-8)预处理细胞,确定了PDGF诱导的c-fos表达和DNA合成对[Ca2+]i的依赖性。在这些条件下,PDGF诱导的DNA合成被阻断,而c-fos表达增强。相反,在用佛波酯长期处理使蛋白激酶C(PKC)活性缺乏的细胞中,BB和AA PDGF诱导的c-fos表达被抑制75 - 80%,而PDGF诱导的[Ca2+]i增加和DNA合成未受影响或增强。此外,发现PDGF刺激的c-fos表达中不依赖PKC的成分与[Ca2+]i的增加无关。这些数据表明:1)BB和AA PDGF同型二聚体在BALB/c3T3成纤维细胞中通过相同或相似的机制引起[Ca2+]i和c-fos原癌基因表达的改变;2)c-fos表达不需要PDGF刺激引起的[Ca2+]i增加;3)不同的途径调节PDGF诱导的c-fos表达和有丝分裂,c-fos表达基本上依赖PKC但不依赖[Ca2+]i,而有丝分裂依赖[Ca2+]i但不依赖PKC。