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与DNA复制相关的元件协同作用以增强果蝇DNA聚合酶α 73-kDa亚基基因的启动子活性。

DNA replication-related elements cooperate to enhance promoter activity of the drosophila DNA polymerase alpha 73-kDa subunit gene.

作者信息

Takahashi Y, Yamaguchi M, Hirose F, Cotterill S, Kobayashi J, Miyajima S, Matsukage A

机构信息

Laboratory of Cell Biology, Aichi Cancer Center Research Institute, Chikusa-ku, Nagoya 464, Japan.

出版信息

J Biol Chem. 1996 Jun 14;271(24):14541-7. doi: 10.1074/jbc.271.24.14541.

Abstract

An analysis was carried out on the promoter region of the Drosophila DNA polymerase alpha 73-kDa subunit gene and the factor(s) activating the promoter. Transcription initiation sites were newly identified in the region downstream of the previously determined sites. Full promoter activity resided within the region from -285 to +129 base pairs with respect to the newly determined major site. Within this region, we found three sequences identical or similar to the DNA replication-related element (DRE), 5'-TATCGATA, which is known as a common promoter-activating element for the Drosophila DNA polymerase alpha 180-kDa subunit gene and the proliferating cell nuclear antigen gene. These sites were located at positions -77 to -70 (DREalpha-I), -44 to -37 (DREalpha-II), and +3 to +10 (DREalpha-III). Footprinting analysis using the recombinant DRE-binding factor (DREF) or Kc cell nuclear extract demonstrated that DREF can bind to all three DRE-related sites. Introduction of mutation in even one of the three DRE-related sequences caused extensive reductions of the promoter activity and also the DREF-binding activity of the promoter-containing fragment. The results indicate that the three DREF-binding sites cooperate to enhance promoter activity of the DNA polymerase alpha 73-kDa subunit gene.

摘要

对果蝇DNA聚合酶α 73-kDa亚基基因的启动子区域以及激活该启动子的因子进行了分析。在先前确定的位点下游区域新鉴定出转录起始位点。相对于新确定的主要位点,完整的启动子活性存在于从-285到+129碱基对的区域内。在该区域内,我们发现了三个与DNA复制相关元件(DRE)5'-TATCGATA相同或相似的序列,该元件是果蝇DNA聚合酶α 180-kDa亚基基因和增殖细胞核抗原基因常见的启动子激活元件。这些位点分别位于-77至-70位(DREα-I)、-44至-37位(DREα-II)和+3至+10位(DREα-III)。使用重组DRE结合因子(DREF)或Kc细胞核提取物进行的足迹分析表明,DREF可与所有三个DRE相关位点结合。即使三个DRE相关序列中的一个发生突变,也会导致启动子活性以及含启动子片段的DREF结合活性大幅降低。结果表明,这三个DREF结合位点协同作用以增强DNA聚合酶α 73-kDa亚基基因的启动子活性。

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