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一个双向启动子正在调控果蝇ras2基因。

A bidirectional promoter is regulating the Drosophila ras2 gene.

作者信息

Cohen N, Salzberg A, Lev Z

机构信息

Department of Biology, Technion-Israel Institute of Technology, Haifa.

出版信息

Oncogene. 1988 Aug;3(2):137-42.

PMID:3412773
Abstract

We isolated and delimitated the Drosophila ras2 promoter region, determined its sequence and mapped the transcription units expressed in this region. The results showed that the Drosophila ras2 gene is flanked by another transcription unit, which codes for two larger transcripts, 2.5 and 2.9 kb long. Orientation experiments, in which sense and antisense RNA probes were used, revealed that both these and the ras2 transcripts are synthesized from different DNA strands. Thus, the flanking transcription unit is in the opposite polarity relative to the ras2 gene. The transcription start sites of the ras2 gene and the flanking transcription unit were determined by external primer extension with T4 DNA polymerase and by RNAase-protection assay and were found to be only 94 nucleotides apart. Apparently, the Drosophila ras2 promoter is a bidirectional promoter. Nucleotide sequence analysis revealed that the 5'-end of the ras2 transcript is within an inverted repeat of the insect cap box. TATA- and GC-like boxes were also found. Analysis of direct and inverted repeats in the promoter region suggested that it is asymmetrical. To demonstrate promoter activity, each side of the ras2 bidirectional promoter was fused to the bacterial chloramphenicol acetyltransferase (CAT) gene and tested by transfecting Drosophila Schneider 2 culture cells. Significant CAT activity was obtained with both transcription fusions.

摘要

我们分离并界定了果蝇ras2启动子区域,确定了其序列,并绘制了该区域表达的转录单元图谱。结果表明,果蝇ras2基因两侧还有另一个转录单元,它编码两种较大的转录本,长度分别为2.5 kb和2.9 kb。使用正义和反义RNA探针进行的方向实验表明,这些转录本和ras2转录本都是从不同的DNA链合成的。因此,侧翼转录单元与ras2基因的极性相反。通过用T4 DNA聚合酶进行外部引物延伸和RNA酶保护试验确定了ras2基因和侧翼转录单元的转录起始位点,发现它们仅相隔94个核苷酸。显然,果蝇ras2启动子是一个双向启动子。核苷酸序列分析表明,ras2转录本的5′端位于昆虫帽盒的反向重复序列内。还发现了类似TATA盒和GC盒的序列。对启动子区域的正向和反向重复序列分析表明它是不对称的。为了证明启动子活性,将ras2双向启动子的每一侧与细菌氯霉素乙酰转移酶(CAT)基因融合,并通过转染果蝇Schneider 2培养细胞进行测试。两种转录融合都获得了显著的CAT活性。

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