首页> 美国卫生研究院文献>Nucleic Acids Research >Sp3 encodes multiple proteins that differ in their capacity to stimulate or repress transcription.
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Sp3 encodes multiple proteins that differ in their capacity to stimulate or repress transcription.

机译:Sp3编码多种蛋白它们刺激或抑制转录的能力不同。

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摘要

The product of the retinoblastoma (Rb) susceptibility gene ( RB-1 ) regulates expression of a variety of growth control genes via discrete promoter elements termed retinoblastoma control elements (RCEs). We have previously shown that RCEs are bound and regulated by a common set of ubiquitously expressed nuclear proteins of 115, 95 and 80 kDa, termed retinoblastoma control proteins (RCPs). We have also previously determined that Sp3 and Sp1, two members of the Sp family of transcription factors, encode the 115 and 95 kDa RCPs respectively and that Rb stimulates Sp1/Sp3-mediated transcription in vivo. In this report we have extended these results by determining that the 80 kDa RCP arises from Sp3 mRNA via translational initiation at two internal sites located within the Sp3 trans -activation domain. Internally initiated Sp3 proteins readily bind to Sp1 binding sites in vitro yet have little or no capacity to stimulate transcription of Sp-regulated genes in vivo. Instead, these Sp3-derived proteins function as potent inhibitors of Sp1/Sp3- mediated transcription. Since cell cycle- or signal- induced expression of a variety of genes, including p21 waf1/cip1, p15 INK4B, CYP11A, mdr1 and acetyl-CoA carboxylase, have been mapped to GC-rich promoter elements that bind Sp family members, we speculate that alterations of the protein and/or DNA binding activities of internally initiated Sp3 isoforms may account in part for the regulation of such differentially expressed genes.
机译:视网膜母细胞瘤(Rb)敏感性基因(RB-1)的产物通过称为视网膜母细胞瘤控制元件(RCE)的离散启动子元件调节多种生长控制基因的表达。先前我们已经表明,RCE受115、95和80 kDa的一组普遍表达的核蛋白(称为视网膜母细胞瘤对照蛋白(RCP))的结合和调控。我们以前也已经确定Sp3和Sp1这两个Sp家族的转录因子成员分别编码115和95 kDa RCP,并且Rb在体内刺激Sp1 / Sp3介导的转录。在本报告中,我们通过确定位于Sp3反式激活域内两个内部位点的翻译起始,由Sp3 mRNA产生了80 kDa RCP,从而扩展了这些结果。内部启动的Sp3蛋白很容易在体外与Sp1结合位点结合,但是几乎没有或没有能力在体内刺激Sp调节基因的转录。而是,这些Sp3衍生的蛋白充当Sp1 / Sp3介导的转录的有效抑制剂。由于细胞周期或信号诱导的多种基因表达,包括p21 waf1 / cip1,p15 INK4B,CYP11A,mdr1和乙酰辅酶A羧化酶,已被映射到与Sp家族成员结合的富含GC的启动子元件,我们推测内部启动的Sp3同工型的蛋白质和/或DNA结合活性的改变可能部分解释了这种差异表达基因的调控。

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