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人拓扑异构酶III基因5'侧翼区的克隆与特性分析

Cloning and characterization of the 5'-flanking region for the human topoisomerase III gene.

作者信息

Kim J C, Yoon J B, Koo H S, Chung I K

机构信息

Department of Biology, College of Science, Bioproducts Research Center, Yonsei University, Seoul 120-749, Korea.

出版信息

J Biol Chem. 1998 Oct 2;273(40):26130-7. doi: 10.1074/jbc.273.40.26130.

Abstract

The human DNA topoisomerase III (hTOP3) gene encodes a topoisomerase homologous to the Escherichia coli DNA topoisomerase I subfamily. To understand the mechanisms responsible for regulating hTOP3 expression, we have cloned the 5'-flanking region of the gene coding for the hTOP3 and analyzed its promoter activity. The presence of a single transcription initiation site was suggested by primer extension analysis. The hTOP3 gene promoter is moderately high in GC content and lacks a canonical TATA box, suggesting that hTOP3 promoter has overall similarity to promoters of a number of housekeeping genes. Examination of the promoter sequence indicated the presence of four Sp-1 consensus binding sequences and a putative initiator element surrounding the transcription initiation site. Transient expression of a luciferase reporter gene under the control of serially deleted 5'-flanking sequences revealed that the 52-base pair region from -326 to -275 upstream of the transcription initiation site includes a positive cis-acting element(s) for the efficient expression of hTOP3 gene. On the basis of gel mobility shift and supershift assays, we demonstrated that both YY1 and USF1 transcription factors can bind to the 52-base pair region. When HeLa cells were transiently transfected with a mutant construct which had disabled both YY1- and USF1-binding sites, the luciferase activity was greatly reduced, suggesting that these binding elements play a functional role in the basal activation of the hTOP3 promoter. Transfection studies with mutations that selectively impaired YY1 or USF1 binding suggested that both YY1 and USF1 function as activators in the hTOP3 promoter.

摘要

人类DNA拓扑异构酶III(hTOP3)基因编码一种与大肠杆菌DNA拓扑异构酶I亚家族同源的拓扑异构酶。为了了解调控hTOP3表达的机制,我们克隆了编码hTOP3的基因的5'侧翼区域,并分析了其启动子活性。引物延伸分析表明存在单个转录起始位点。hTOP3基因启动子的GC含量中等偏高,且缺乏典型的TATA盒,这表明hTOP3启动子与许多管家基因的启动子总体相似。对启动子序列的检查表明,在转录起始位点周围存在四个Sp-1共有结合序列和一个推定的起始子元件。在连续缺失的5'侧翼序列控制下的荧光素酶报告基因的瞬时表达表明,转录起始位点上游-326至-275的52个碱基对区域包含一个用于hTOP3基因高效表达的正向顺式作用元件。基于凝胶迁移率变动分析和超迁移分析,我们证明YY1和USF1转录因子都能与52个碱基对区域结合。当用使YY1和USF1结合位点均失活的突变构建体瞬时转染HeLa细胞时,荧光素酶活性大大降低,这表明这些结合元件在hTOP3启动子的基础激活中发挥功能作用。对选择性损害YY1或USF1结合的突变进行的转染研究表明,YY1和USF1在hTOP3启动子中均作为激活剂发挥作用。

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