SRY-Box转录因子9通过抑制转录抑制因子CCAAT/增强子结合蛋白β来调节3'-磷腺苷-5'-磷酸硫酸合成酶2 mRNA的表达

Cunren Liu, Rosa Serra
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引用次数: 0

摘要

此前,我们发现 Papss2 的表达是通过 Sox9 依赖性途径调控的。在此,我们探讨了 Sox9 调节小鼠 Papss2 的分子机制。通过共转染和荧光素酶报告实验,我们在Papss2第二起始位点上游发现了一个509bp的Sox9响应DNA元件(C区)。Sox9反应元件被缩小到区域C内的32bps(Sox9RE)。在 S9RE 中确定了推定的 SoxE 和 C/EBPβ 结合位点。C/EBPβ被鉴定为Sox9介导活性的抑制因子。在转染了 C/EBPβ 和 Sox9 表达载体的细胞中,增加 C/EBPβ 的量会导致 Sox9 介导的 C 区激活减弱,而增加 Sox9 的量则会在 C/EBPβ 存在的情况下激活转录。利用电迁移测定法,在与 ATDC5 细胞的核提取物孵育后,在 S9RE 上发现了三种蛋白质复合物。超迁移试验表明,在基础条件下,C/EBPβ存在于所观察到的DNA-蛋白质复合物中。预测的 SoxE 结合位点发生点突变的未标记 S9RE 与 S9RE 上的蛋白质复合物形成竞争,而与预测的 SoxE 结合位点相对应的过量寡聚物则没有竞争,这表明蛋白质在基础条件下不会与 SoxE motiff 结合。在 Sox9 高表达的条件下,S9RE 上蛋白质-DNA 复合物的形成受到抑制。然后,我们通过 Western 印迹显示,Sox9 蛋白的增加导致 C/EBPβ 蛋白水平的降低。共免疫沉淀表明 Sox9 和 C/EBPβ 蛋白相互作用。我们认为,Sox9首先与C/EBPβ相互作用,阻止其与DNA结合,然后减少C/EBPβ的表达,从而起到解除抑制C/EBPβ抑制Papss2转录的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
SRY-Box Transcription Factor 9 regulates 3'-Phosphoadenosine 5'-Phosphosulfate Synthase 2 mRNA expression through derepression of the transcriptional repressor, CCAAT/enhancer-binding protein beta
Previously, we showed that Papss2 expression is regulated through a Sox9-dependent pathway. Here we explore molecular mechanisms whereby Sox9 regulates mouse Papss2. A 509bp Sox9-responsive DNA element (Region C) was identified upstream of the Papss2 second start site using co-transfection and luciferase reporter assays. A Sox9 responsive element was narrowed down to 32bps within Region C (Sox9RE). Putative SoxE and C/EBPβ binding sites were identified within S9RE. C/EBPβ was identified as a repressor for Sox9-mediated activity. In cells transfected with expression vectors for C/EBPβ and Sox9, increasing amounts of C/EBPβ resulted in attenuation of Sox9-mediated activation of Region C while increasing amounts of Sox9 activated transcription in the presence of C/EBPβ. Using electromobility shift assays, three protein complexes were identified on S9RE after incubation with nuclear extracts from ATDC5 cells. Super shift assays indicated that under basal conditions C/EBPβ was present in the DNA-protein complexes observed. Unlabeled S9RE with point mutations in the predicted SoxE binding site competed with protein complex formation on the S9RE while excess oligo corresponding to the predicted SoxE binding site did not, suggesting that proteins do not bind to SoxE motiff under basal conditions. Under conditions of high Sox9 expression, the formation of protein-DNA complexes on S9RE was inhibited. We then showed by western blot that increasing Sox9 protein resulted in reduced C/EBPβ protein levels. Co-immunoprecipitation indicated interaction of Sox9 and C/EBPβ proteins. We propose that Sox9 acts to derepress C/EBPβ-inhibited transcription of Papss2 by first interacting with C/EBPβ to prevent it from binding DNA, then reducing C/EBPβ expression.
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