Murthy S C, Bhat G P, Thimmappaya B
Proc Natl Acad Sci U S A. 1985 Apr;82(8):2230-4. doi: 10.1073/pnas.82.8.2230.
A molecular dissection of the adenovirus EIIA early (E) promoter was undertaken to study the sequence elements required for transcription and to examine the nucleotide sequences, if any, specific for its trans-activation by the viral pre-early EIA gene product. A chimeric gene in which the EIIA-E promoter region fused to the coding sequences of the bacterial chloramphenicol acetyltransferase (CAT) gene was used in transient assays to identify the transcriptional control regions. Deletion mapping studies revealed that the upstream DNA sequences up to -86 were sufficient for the optimal basal level transcription in HeLa cells and also for the EIA-induced transcription. A series of linker-scanning (LS) mutants were constructed to precisely identify the nucleotide sequences that control transcription. Analysis of these LS mutants allowed us to identify two regions of the promoter that are critical for the EIIA-E transcription. These regions are located between -29 and -21 (region I) and between -82 and -66 (region II). Mutations in region I affected initiation and appeared functionally similar to the "TATA" sequence of the commonly studied promoters. To examine whether or not the EIIA-E promoter contained DNA sequences specific for the trans-activation by the EIA, the LS mutants were analyzed in a cotransfection assay containing a plasmid carrying the EIA gene. CAT activity of all of the LS mutants was induced by the EIA gene in this assay, suggesting that the induction of transcription of the EIIA-E promoter by the EIA gene is not sequence-specific.
对腺病毒EIIA早期(E)启动子进行了分子剖析,以研究转录所需的序列元件,并检查是否存在对病毒早期EIA基因产物的反式激活具有特异性的核苷酸序列。在瞬时分析中使用了一个嵌合基因,其中EIIA-E启动子区域与细菌氯霉素乙酰转移酶(CAT)基因的编码序列融合,以鉴定转录控制区域。缺失图谱研究表明,上游至-86的DNA序列足以在HeLa细胞中实现最佳基础水平转录,也足以实现EIA诱导的转录。构建了一系列接头扫描(LS)突变体,以精确鉴定控制转录的核苷酸序列。对这些LS突变体的分析使我们能够鉴定出启动子中对EIIA-E转录至关重要的两个区域。这些区域位于-29至-21之间(区域I)和-82至-66之间(区域II)。区域I中的突变影响起始,并且在功能上类似于常用启动子的“TATA”序列。为了检查EIIA-E启动子是否包含对EIA反式激活具有特异性的DNA序列,在含有携带EIA基因的质粒的共转染分析中分析了LS突变体。在此分析中,所有LS突变体的CAT活性均由EIA基因诱导,这表明EIA基因对EIIA-E启动子转录的诱导不是序列特异性的。