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小鼠腺苷脱氨酶启动子需要一个非典型的TATA框,该框结合转录因子IID,并且转录活性受到多个上游Sp1结合位点的刺激。

The murine adenosine deaminase promoter requires an atypical TATA box which binds transcription factor IID and transcriptional activity is stimulated by multiple upstream Sp1 binding sites.

作者信息

Innis J W, Moore D J, Kash S F, Ramamurthy V, Sawadogo M, Kellems R E

机构信息

Institute for Molecular Genetics, Baylor College of Medicine, Houston, Texas.

出版信息

J Biol Chem. 1991 Nov 15;266(32):21765-72.

PMID:1939199
Abstract

We have explored the template and factor requirements for in vitro transcription of the GC-rich promoter of the murine adenosine deaminase gene. The core promoter consists of an A-rich sequence (TAAAAAA) 27 base pairs upstream of the initiation site which binds transcription factor IID (TFIID) and a high affinity Sp1 binding site located 27 base pairs further upstream. Multiple upstream elements increased core promoter activity 20-fold and correspond to protected regions in DNase I footprinting assays with purified Sp1 protein. Internal deletion of the TA6 element alone eliminated transcription in spite of the presence of all other promoter elements including four Sp1 binding sites. Recombinant human TFIID supported weak basal transcription in heat-treated nuclear extracts whereas a partially purified TFIID fraction from HeLa cells reconstituted a maximal level of transcription. Inclusion of 12 base pairs immediately adjacent to the proximal Sp1 site resulted in a 5-fold boost in transcriptional activity and corresponds to a second Sp1 binding site. These results serve as a basis for further exploration of the factors involved in the developmental and selective high level tissue expression of the murine adenosine deaminase gene.

摘要

我们已经探究了小鼠腺苷脱氨酶基因富含GC的启动子体外转录所需的模板和因子。核心启动子由起始位点上游27个碱基对处的富含A的序列(TAAAAAA)组成,该序列可结合转录因子IID(TFIID),以及位于更上游27个碱基对处的高亲和力Sp1结合位点。多个上游元件使核心启动子活性提高了20倍,并且与用纯化的Sp1蛋白进行的DNase I足迹分析中的受保护区域相对应。尽管存在包括四个Sp1结合位点在内的所有其他启动子元件,但单独缺失TA6元件会消除转录。重组人TFIID在热处理的核提取物中支持较弱的基础转录,而来自HeLa细胞的部分纯化的TFIID组分可重建最大水平的转录。紧邻近端Sp1位点包含12个碱基对会使转录活性提高5倍,并且对应于第二个Sp1结合位点。这些结果为进一步探究参与小鼠腺苷脱氨酶基因发育和选择性高水平组织表达的因子奠定了基础。

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