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首页> 外文期刊>Molecular pharmacology. >Selective Down-Regulation of c-jun Gene Expression by Pentoxifylline and c-jun Antisense Interrupts Platelet-Derived Growth Factor Signaling: Pentoxifylline Inhibits Phosphorylation of c-Jun on Serine 73.
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Selective Down-Regulation of c-jun Gene Expression by Pentoxifylline and c-jun Antisense Interrupts Platelet-Derived Growth Factor Signaling: Pentoxifylline Inhibits Phosphorylation of c-Jun on Serine 73.

机译:己酮可可碱和c-jun反义中断c-jun基因表达的选择性下调中断血小板衍生的生长因子信号传导:己酮可可碱抑制c-Jun在丝氨酸73上的磷酸化。

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摘要

Platelet-derived growth factor (PDGF) signals through several pathways, including mitogen-activated protein (MAP) kinase, Jun kinase, and C kinase, and stimulates proliferation of fibroblasts. Pentoxifylline inhibits PDGF-driven proliferation of fibroblasts. We have reported that pentoxifylline did not inhibit binding of PDGF to its specific cell-surface receptors or PDGF receptor phosphorylation. In this study, we investigated the effect of PDGF on the expression of c-fos and c-jun, because c-fos and c-jun form activator protein-1 complexes that stimulate genes involved in proliferation. We determined whether pentoxifylline would alter the expression of c-fos and c-jun. Our results indicate that PDGF induced the expression of both c-fos and c-jun. Pentoxifylline effectively reduced c-jun gene expression, which had been up-regulated by PDGF, but did not alter c-fos gene expression. The lack of effect on c-fos supports other studies from this laboratory, which indicate that pentoxifylline did not inhibit PDGF activation of MAP kinase. Treatment of fibroblasts with a phosphothioate c-jun antisense oligodeoxynucleotide reduced the levels of c-Jun protein and blocked PDGF-stimulated proliferation, suggesting a critical role for c-jun in PDGF-mediated proliferation. Combination of pentoxifylline and c-jun antisense suggested that they were likely inhibiting PDGF-stimulated proliferation at a single site in the PDGF signaling pathway. These results suggest that pentoxifylline inhibits PDGF-stimulated proliferation by selectively decreasing c-jun expression. To further define the mechanism of action of pentoxifylline, we assessed the effect of pentoxifylline on c-Jun and phosphorylated c-Jun immunoreactivity in cells treated with PDGF and cells that were transfected with wild-type c-jun plasmid using immunocytochemistry and Western blot analyses, and our results indicate that pentoxifylline inhibited phosphorylation of c-Jun on serine 73.
机译:血小板衍生的生长因子(PDGF)通过多种途径发出信号,包括促分裂原活化蛋白(MAP)激酶,Jun激酶和C激酶,并刺激成纤维细胞增殖。己酮可可碱抑制PDGF驱动的成纤维细胞增殖。我们已经报道了己酮可可碱不抑制PDGF与其特异性细胞表面受体或PDGF受体磷酸化的结合。在这项研究中,我们研究了PDGF对c-fos和c-jun表达的影响,因为c-fos和c-jun形成了激活蛋白1复合物,可刺激涉及增殖的基因。我们确定了己酮可可碱是否会改变c-fos和c-jun的表达。我们的结果表明PDGF诱导c-fos和c-jun的表达。己酮可可碱有效降低了c-jun基因的表达,而后者已被PDGF上调,但并未改变c-fos基因的表达。对c-fos的影响缺乏支持该实验室的其他研究,这表明己酮可可碱不会抑制MAP激酶的PDGF活化。用硫代磷酸酯c-jun反义寡脱氧核苷酸处理成纤维细胞可降低c-Jun蛋白水平并阻断PDGF刺激的增殖,提示c-jun在PDGF介导的增殖中起关键作用。己酮可可碱和c-jun反义结合使用表明它们可能在PDGF信号通路中的单个位点抑制PDGF刺激的增殖。这些结果表明,己酮可可碱通过选择性降低c-jun表达来抑制PDGF刺激的增殖。为了进一步定义己酮可可碱的作用机制,我们使用免疫细胞化学和蛋白质印迹分析评估了己酮可可碱对PDGF处理的细胞和野生型c-jun质粒转染的细胞中c-Jun和磷酸化c-Jun免疫反应性的影响,并且我们的结果表明己酮可可碱抑制了丝氨酸73上c-Jun的磷酸化。

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