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Regulation of c-fos Gene Induction and Mitogenic Effect of Transforming Growth factor-β1 in Rat Articular Chondrocyte

机译:大鼠关节软骨细胞c-fos基因诱导调控及转化生长因子-β1的成丝作用

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References(29) Cited-By(7) We have previously reported that type I transforming growth factor beta (TGF-β1) is a potent stimulator of cell growth in articular chondrocytes. In this study, we examined the mechanism of TGF-β1 induced cellular proliferation by using cultured rat articular chondrocytes (CRAC). A time-course study of [3H]thymidine incorporation upon TGF-β1 (1ng/mL) or 10% fetal bovine serum stimulation revealed that TGF-β1 directly stimulates DNA synthesis in CRAG. Pretreatment with H7, an inhibitor for protein kinase C (PKC), completely blocks TGF-β1-induced proliferation. Since TGF-β1 has been shown to transduce signals through MAP kinase cascades, we investigated the induction of several protooncogenes by Northern blotting. TGF-β1 addition causes an immediate and transient induction of c-fos but not myc or jun mRNA. Furthermore, this c-fos expression is not inhibited by cycloheximide, but is completely abolished by pretreatment with TPA, so that the c-fos gene is a direct target of TGF-β1 signalling and PKC is involved in this c-fos induction. To refine our understanding of TGF-β1 regulation of the c-fos promoter region, we performed chloramphenicol acetyltransferase (CAT) assays. A serial deletion analysis of the c-fos promoter region reveals a TGF-β1 responsive element in a region between -403 and - 329bp upstream of the transcription initiation site. We attempted gel shift assays on this response element with CRAC nuclear extracts. Although this region contains a sis-inducible binding element, we fail to detect specific DNA- protein complexes. Our results, however, suggest that TGF-β1 acts as a primary mitogen in CRAC and this mitogenic activity requires PKC activation. Finally, the subsequent induction of c-fos expression occurs through an as yet unidentified transactivation mechanism.
机译:参考文献(29)By-By(7)我们先前曾报道过I型转化生长因子β(TGF-β1)是关节软骨细胞中细胞生长的有效刺激剂。在这项研究中,我们通过使用培养的大鼠关节软骨细胞(CRAC)研究了TGF-β1诱导的细胞增殖的机制。 TGF-β1(1ng / mL)或10%胎牛血清刺激后[3H]胸苷掺入的时程研究表明,TGF-β1直接刺激CRAG中的DNA合成。用蛋白激酶C(PKC)抑制剂H7进行的预处理可以完全阻止TGF-β1诱导的增殖。由于已证明TGF-β1可通过MAP激酶级联转导信号,因此我们通过Northern杂交研究了几种原癌基因的诱导。 TGF-β1的添加引起c-fos的立即和瞬时诱导,但不会引起myc或jun mRNA的诱导。此外,该c-fos表达不受环己酰亚胺的抑制,但通过TPA预处理被完全消除,因此c-fos基因是TGF-β1信号传导的直接靶标,而PKC参与了该c-fos的诱导。为了进一步了解c-fos启动子区域的TGF-β1调控,我们进行了氯霉素乙酰转移酶(CAT)分析。对c-fos启动子区域的系列缺失分析显示,在转录起始位点上游-403至-329bp之间的区域中存在TGF-β1响应元件。我们尝试使用CRAC核提取物对此响应元件进行凝胶迁移测定。尽管该区域包含sis诱导型结合元件,但我们无法检测到特定的DNA-蛋白质复合物。然而,我们的结果表明,TGF-β1在CRAC中充当主要的有丝分裂原,而这种有丝分裂活性需要PKC激活。最后,随后的c-fos表达诱导通过尚未确定的反式激活机制发生。

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