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The Downstream Promoter Element DPE Appears To Be as Widely Used as the TATA Box in Drosophila Core Promoters

机译:下游启动子元件DPE似乎与果蝇核心启动子中的TATA盒一样广泛使用

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The downstream promoter element (DPE) functions cooperatively with the initiator (Inr) for the binding of TFIID in the transcription of core promoters in the absence of a TATA box. We examined the properties of sequences that can function as a DPE as well as the range of promoters that use the DPE as a core promoter element. By using an in vitro transcription assay, we identified 17 new DPE-dependent promoters and found that all possessed identical spacing between the Inr and DPE. Moreover, mutational analysis indicated that the insertion or deletion of a single nucleotide between the Inr and DPE causes a reduction in transcriptional activity and TFIID binding. To explore the range of sequences that can function as a DPE, we constructed and analyzed randomized promoter libraries. These experiments yielded the DPE functional range set, which represents sequences that contribute to or are compatible with DPE function. We then analyzed the DPE functional range set in conjunction with a Drosophila core promoter database that we compiled from 205 promoters with accurately mapped start sites. Somewhat surprisingly, the DPE sequence motif is as common as the TATA box in Drosophila promoters. There is, in addition, a striking adherence of Inr sequences to the Inr consensus in DPE-containing promoters relative to DPE-less promoters. Furthermore, statistical and biochemical analyses indicated that a G nucleotide between the Inr and DPE contributes to transcription from DPE-containing promoters. Thus, these data reveal that the DPE exhibits a strict spacing requirement yet some sequence flexibility and appears to be as widely used as the TATA box in Drosophila.
机译:在没有TATA盒的情况下,下游启动子元件(DPE)与启动子(Inr)协同作用,在核心启动子的转录中与TFIID结合。我们检查了可用作DPE的序列的特性,以及使用DPE作为核心启动子元件的启动子范围。通过使用体外转录测定,我们确定了17个新的DPE依赖性启动子,并发现所有Inr和DPE之间具有相同的间隔。此外,突变分析表明Inr和DPE之间单个核苷酸的插入或缺失导致转录活性和TFIID结合降低。为了探索可以用作DPE的序列范围,我们构建并分析了随机启动子文库。这些实验产生了DPE功能范围集,该范围集表示有助于DPE功能或与DPE功能兼容的序列。然后,我们与Drosophila 核心启动子数据库一起分析了DPE的功能范围,该数据库由205个具有精确映射起始位点的启动子组成。令人惊讶的是,DPE序列基序与果蝇启动子中的TATA盒一样普遍。此外,相对于不含DPE的启动子,在含DPE的启动子中Inr序列与Inr共有序列的惊人结合。此外,统计和生化分析表明,Inr和DPE之间的G核苷酸有助于从含DPE的启动子转录。因此,这些数据表明,DPE表现出严格的间隔要求,但具有一定的序列灵活性,并且似乎与果蝇中的TATA盒一样广泛使用。

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