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p53肿瘤抑制因子和Sp1对人类DNA聚合酶δ催化亚基基因POLD1的转录调控

Transcriptional regulation of the human DNA polymerase delta catalytic subunit gene POLD1 by p53 tumor suppressor and Sp1.

作者信息

Li B, Lee M Y

机构信息

Department of Biochemistry and Molecular Biology, New York Medical College, Valhalla, New York 10595, USA.

出版信息

J Biol Chem. 2001 Aug 10;276(32):29729-39. doi: 10.1074/jbc.M101167200. Epub 2001 May 25.

Abstract

The DNA polymerase delta catalytic subunit gene (POLD1) was studied as a transcriptional target of p53. Northern blotting showed that a significantly decreased steady-state level of POLD1 mRNA was associated with increased wild-type p53 expression in cells treated with methyl methanesulfonate. When ectopic wild-type p53 expression was induced to a physiologically relevant level in "tet-off" cultured cells in which p53 expression was tightly regulated by tetracycline, it was found that POLD1 steady-state mRNA was repressed by about 65%. Transient cotransfection experiments using a POLD1 promoter luciferase reporter construct showed that: (i) POLD1 promoter activity was inhibited by transfected wild-type p53 plasmid to a maximum of about 86%; (ii) p53 mediated a large part of the transcriptional repression through a sequence-specific interaction with a site identified as the P4 site of the POLD1 promoter; (iii) tumor-derived p53 mutations in the p53 DNA-binding domain completely abolished the p53 transrepression activity. Moreover, transfection assays demonstrated that p53 was able to repress Sp1-stimulated POLD1 promoter activity and that this repression was largely due to the loss of the sequence-specific interaction between Sp1 protein and the P4 Sp1-binding site, which overlaps the P4 p53-binding site. Finally, gel shift assays suggested that p53 competes with Sp1 protein for binding to the P4 sequence of the POLD1 promoter.

摘要

DNA聚合酶δ催化亚基基因(POLD1)作为p53的转录靶点进行了研究。Northern印迹分析表明,在用甲磺酸甲酯处理的细胞中,POLD1 mRNA的稳态水平显著降低与野生型p53表达增加相关。当在“四环素调控关闭”培养细胞中诱导异位野生型p53表达至生理相关水平时(其中p53表达受四环素严格调控),发现POLD1稳态mRNA被抑制约65%。使用POLD1启动子荧光素酶报告构建体进行的瞬时共转染实验表明:(i)POLD1启动子活性被转染的野生型p53质粒抑制,最大抑制约86%;(ii)p53通过与被鉴定为POLD1启动子P4位点的序列特异性相互作用介导大部分转录抑制;(iii)p53 DNA结合结构域中的肿瘤衍生p53突变完全消除了p53的反式抑制活性。此外,转染分析表明p53能够抑制Sp1刺激的POLD1启动子活性,并且这种抑制很大程度上是由于Sp1蛋白与P4 Sp1结合位点之间的序列特异性相互作用丧失,该位点与P4 p53结合位点重叠。最后,凝胶迁移分析表明p53与Sp1蛋白竞争结合POLD1启动子的P4序列。

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