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一个与胎盘蛋白相互作用的TEF-1结合基序对人绒毛膜促性腺激素β亚基(hCS-B)增强子的转录活性很重要。

A TEF-1 binding motif that interacts with a placental protein is important for the transcriptional activity of the hCS-B enhancer.

作者信息

Jacquemin P, Oury C, Belayew A, Martial J A

机构信息

Laboratoire de Biologie Moléculaire et de Génie Génétique, Université de Liège, Sart-Tilman, Belgium.

出版信息

DNA Cell Biol. 1994 Oct;13(10):1037-45. doi: 10.1089/dna.1994.13.1037.

Abstract

The transcriptional activity of the human placental lactogen genes (choriosomatomammotropic hormone, hCS) is controlled by tissue-specific enhancers located 4 kb downstream from their respective origins of transcription. The hCS-B enhancer is the strongest; its activity is mediated by synergism between two protein-binding sites (DF-3 and DF-4). The DF-4 site possesses a potential binding sequence for TEF-1, a known transcription factor. In this paper, we show by electrophoretic mobility-shift assays and antibody supershift experiments that TEF-1 does not bind to site DF-4. Mutations in the TEF-1-like binding motif of site DF-4 prevent formation of the DNA-protein complex, called complex f, in the presence of placental JEG-3 cell extracts. When HeLa cell extracts are used, another complex (complex c) is also affected. In transient expression experiments, TKCAT constructs linked to this mutated DF-4 site exhibit greatly reduced transcriptional activity when introduced into JEG-3 cells. Some cell lines contain both protein c and protein f (the proteins forming complexes c and f); when transfected, these lines display reduced DF-4-driven activity, suggesting that the two proteins could compete for the same DF-4 sequence. We conclude that protein f is important for the placenta-specific activity of the hCS-B enhancer. By UV cross-linking, we show that protein f is actually three polypeptides ranging in size from about 12 to 21 kD.

摘要

人胎盘催乳素基因(绒毛膜体促乳腺激素,hCS)的转录活性受位于各自转录起始点下游4 kb处的组织特异性增强子控制。hCS - B增强子是最强的;其活性由两个蛋白质结合位点(DF - 3和DF - 4)之间的协同作用介导。DF - 4位点具有已知转录因子TEF - 1的潜在结合序列。在本文中,我们通过电泳迁移率变动分析和抗体超迁移实验表明,TEF - 1不与DF - 4位点结合。DF - 4位点的TEF - 1样结合基序中的突变会阻止在胎盘JEG - 3细胞提取物存在下形成称为复合物f的DNA - 蛋白质复合物。当使用HeLa细胞提取物时,另一种复合物(复合物c)也会受到影响。在瞬时表达实验中,与这个突变的DF - 4位点相连的TKCAT构建体在导入JEG - 3细胞时表现出大大降低的转录活性。一些细胞系同时含有蛋白质c和蛋白质f(形成复合物c和f的蛋白质);当转染时,这些细胞系显示出DF - 4驱动的活性降低,这表明这两种蛋白质可能竞争相同的DF - 4序列。我们得出结论,蛋白质f对hCS - B增强子的胎盘特异性活性很重要。通过紫外线交联,我们表明蛋白质f实际上是三种大小约为12至21 kD的多肽。

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