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Role of the Ets-1 Transcription Factor during Activation of Rat Hepatic Stellate Cells in Culture

机译:Ets-1转录因子在培养大鼠肝星状细胞中的作用

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摘要

During liver tissue repair, hepatic stellate cells (HSCs), a pericyte-like nonparenchymal liver cell population, transform from a quiescent status (resting HSCs) into myofibroblast like cells (activated HSCs); the latter is the principal matrix-synthesizing cell of the liver. Although several factors have been shown to be involved in this important process, the molecular mechanisms regulating HSC activation are still under investigation. To identify key regulatory proteins involved in the HSC activation process, we used different mRNA display technologies, with cDNAs prepared from HSCs at different stages of in vitro activation. With the latter technique, the transcription factor Ets-1 was detected through its down-regulation during activation. As confirmed by Northern blot and reverse transcriptase-polymerase chain reaction (RT-PCR) analysis, mRNAs coding for Ets-1 were present in the highest amounts in freshly isolated HSCs and in HSCs 2 days after plating (classified as resting HSCs/early activated HSCs) and were diminished in HSCs 7 days after plating (activated cells). Ets-1 protein was present in HSC-lysates, as assessed by Western blot, and bound to an oligonucleotide containing the Ets-1 consensus cis-acting motif, as demonstrated by electrophoretic mobility shift assay. Ets-1 binding activity peaked in nuclear extracts prepared from resting/early activated cells and was diminished in extracts derived from fully activated cells. In contrast, binding activity of the transcription factors TFIID, AP-1, and SP-1 was highest in activated HSCs and only barely detectable in resting/early activated HSCs. By Northern blot and RT-PCR analysis, Ets-1-specific transcripts were present in parenchymal and other nonparenchymal liver cells too, illustrating that hepatic Ets-1 expression is not specific or restricted to HSCs. However, the unique pattern of Ets-1 binding activity present in resting versus activated HSCs and its known implications for cellular differentiation and tissue remodeling suggest that Ets-1 could be of crucial importance for HSC activation and hepatic tissue repair.
机译:在肝组织修复过程中,肝星状细胞(HSC)(一种 类似周细胞的非实质肝细胞群)将 从静止状态(静止的HSC)转变为成肌纤维细胞,如 单元(激活的HSC);后者是肝脏的主要基质合成 细胞。尽管已经显示了几个因素参与该重要过程,但仍在研究调节HSC活化的分子机制。为了 识别参与HSC激活的关键调控蛋白 ,我们使用了不同的mRNA展示技术,并从HSC的不同阶段制备了cDNAs。 后一种技术是通过激活过程中的下调检测到转录因子Ets-1的 。通过Northern印迹和逆转录聚合酶链反应(RT-PCR)分析证实 ,编码Ets-1的mRNA存在于 区域。接种后第2天新鲜分离的HSC和HSC中的含量最高(分类为静息HSC /早期活化的 HSC),而接种后第7天的HSC中含量降低(活化的 > 单元格)。 Western blot评估,Ets-1蛋白存在于HSC裂解物中,并结合到含有 Ets-1共有顺式作用基序的寡核苷酸上,如电泳 迁移率测定。 Ets-1结合活性在由静息/早期活化细胞制备的核提取物中达到峰值,而在从完全活化细胞衍生的提取物中减少。相反,转录因子TFIID,AP-1和 SP-1的 结合活性在活化的HSC中最高,而在激活的HSC中只有很少可检测到的 休息/早期激活的HSC。通过Northern印迹和RT-PCR 分析,实质 和其他非实质肝细胞中也存在Ets-1特异性转录本,说明 肝Ets-1的表达并非特定于HSC,也不局限于HSC。 但是,静息与活化的HSC的Ets-1结合活性的独特模式 对于细胞分化和组织重塑表明, Ets-1对HSC活化和 肝组织修复至关重要。

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  • 来源
    《American Journal of Pathology》 |1999年第6期|1841-1848|共8页
  • 作者单位

    From the Department of Internal Medicine,Section of Gastroenterology and Endocrinology, University of G?ttingen, G?ttingen, Germany;

    From the Department of Internal Medicine,Section of Gastroenterology and Endocrinology, University of G?ttingen, G?ttingen, Germany;

    and the Institute of Pathology and Experimental Cancer Research,Semmelweis Medical University, Budapest, Hungary;

    From the Department of Internal Medicine,Section of Gastroenterology and Endocrinology, University of G?ttingen, G?ttingen, Germany;

    From the Department of Internal Medicine,Section of Gastroenterology and Endocrinology, University of G?ttingen, G?ttingen, Germany;

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