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TATA-dependent enhancer stimulation of promoter activity in mice is developmentally acquired.

机译:TATA依赖增强剂对小鼠启动子活性的刺激已获得发展。

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摘要

Herpes simplex virus (HSV) thymidine kinase (tk) promoter activity depends on four transcription factor binding sites, one of which is a TATA box sequence, and the presence of either a cis-acting enhancer sequence or a transactivator protein. Studies presented here show that this TATA box was required for promoter activity only after cells began to differentiate and then only when promoter activity was stimulated by either an enhancer or a transactivator. When the HSV tk promoter was utilized by mouse embryos from the one-cell to eight-cell stage of development or by undifferentiated mouse embryonic stem cells, disruption of the HSV tk TATA box by site-specific mutations did not reduce promoter activity. This was true even when HSV tk promoter activity was stimulated strongly by either the embryo-responsive polyomavirus F101 enhancer or its natural transactivator, the HSV ICP4 gene product. However, stimulated expression was dependent on a distal Sp1 DNA binding site. Similarly, disruption of the TATA box did not reduce tk promoter activity in primary mouse embryonic fibroblasts or in immortalized 3T3 mouse fibroblasts; in fact, promoter activity was increased up to 2.6-fold. However, in these differentiated cells, stimulation of the HSV tk promoter by either the F101 enhancer or ICP4 protein required the TATA box. HSV tk promoter activity also was dependent on its TATA box in the mouse oocyte, a terminally differentiated cell with an endogenous transactivating activity. These results reveal that the need for a TATA box is developmentally acquired and depends on at least two parameters: the differentiated state of the cell and stimulation of the promoter by either an enhancer or a transactivator.
机译:单纯疱疹病毒(HSV)胸苷激酶(tk)启动子的活性取决于四个转录因子结合位点,其中之一是TATA盒序列,以及是否存在顺式作用增强子序列或反式激活蛋白。此处进行的研究表明,只有在细胞开始分化之后,然后仅在增强子或反式激活子刺激启动子活性时,此TATA框才需要启动子活性。当HSV tk启动子被用于从一细胞到八细胞发育阶段的小鼠胚胎或未分化的小鼠胚胎干细胞利用时,位点特异性突变对HSV tk TATA盒的破坏不会降低启动子活性。即使当胚胎反应性多瘤病毒F101增强子或其天然反式激活子HSV ICP4基因产物强烈刺激HSV tk启动子活性时,也是如此。但是,刺激的表达取决于远端Sp1 DNA结合位点。同样,破坏TATA框并不会降低原代小鼠胚胎成纤维细胞或永生化3T3小鼠成纤维细胞中的tk启动子活性。实际上,启动子活性提高了2.6倍。然而,在这些分化的细胞中,通过F101增强子或ICP4蛋白刺激HSV tk启动子需要TATA盒。 HSV tk启动子的活性还取决于其在小鼠卵母细胞中的TATA框,后者是具有内源性反式激活活性的终末分化细胞。这些结果表明,对TATA盒的需求已得到发展,并取决于至少两个参数:细胞的分化状态和增强子或反式激活子对启动子的刺激。

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