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p53对MCK启动子的协同转录激活:四聚体通过DNA环化连接分离的DNA反应元件。

Synergistic transcriptional activation of the MCK promoter by p53: tetramers link separated DNA response elements by DNA looping.

作者信息

Jackson P, Mastrangelo I, Reed M, Tegtmeyer P, Yardley G, Barrett J

机构信息

Oncology Research Centre, Prince of Wales Hospital, Randwick, NSW, Australia.

出版信息

Oncogene. 1998 Jan 15;16(2):283-92. doi: 10.1038/sj.onc.1201491.

Abstract

The WAF1, Cyclin G and muscle creatine kinase (MCK) genes, all contain multiple copies of the consensus p53-binding element within their regulatory regions. We examined the role of these elements in transactivation of the muscle creatine kinase (MCK) gene by p53. The MCK promoter possesses distal (-3182 to -3133) and proximal (-177 to -81) p53-binding elements within which residues -3182 to -3151 (distal) and -176 to -149 (proximal) show homology to the consensus p53-binding site. Using promoter deletion studies, we find that both proximal and distal elements are required for high level, synergistic transcriptional activation in vivo. Electron microscopy indicates that p53-p53 interactions link proximal and distal p53-binding elements and cause looping out of intervening DNA, suggesting that this DNA sequence may be dispensable for synergy. This idea was confirmed by progressive deletion of the DNA between p53-binding elements. Synergism persisted with spacing reduced to only 150 bp. Tetramerization-deficient p53 mutants were defective for transcriptional activation but still capable of synergy. Our results provide evidence for a model by which high level transcriptional activation of promoters with multiple p53 response elements is achieved.

摘要

WAF1基因、细胞周期蛋白G基因和肌肉肌酸激酶(MCK)基因,在其调控区域均包含多个共有p53结合元件拷贝。我们研究了这些元件在p53对肌肉肌酸激酶(MCK)基因反式激活中的作用。MCK启动子拥有远端(-3182至-3133)和近端(-177至-81)p53结合元件,其中-3182至-3151位点(远端)和-176至-149位点(近端)与共有p53结合位点具有同源性。通过启动子缺失研究,我们发现在体内高水平协同转录激活需要近端和远端元件。电子显微镜显示p53-p53相互作用连接近端和远端p53结合元件并导致中间DNA成环,这表明该DNA序列对于协同作用可能是可有可无的。通过逐步缺失p53结合元件之间的DNA证实了这一观点。当间距减小到仅150 bp时协同作用仍然存在。四聚化缺陷型p53突变体在转录激活方面存在缺陷,但仍具有协同能力。我们的结果为一个模型提供了证据,通过该模型可实现具有多个p53反应元件的启动子的高水平转录激活。

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