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Bidirectional transcription is an inherent feature of Giardia lamblia promoters and contributes to an abundance of sterile antisense transcripts throughout the genome

机译:双向转录是贾第鞭毛虫启动子的固有特征,并且有助于整个基因组中大量的无菌反义转录本

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A prominent feature of transcription in Giardia lamblia is the abundant production of sterile antisense transcripts (Elmendorf et al. The abundance of sterile transcripts in Giardia lamblia. Nucleic Acids., 29, 4674-4683). Here, we use a computational biology analysis of SAGE data to assess the abundance and distribution of sense and antisense messages in the parasite genome. Sterile antisense transcripts are produced at similar to 50% of loci with detectable transcription, yet their abundance at a given locus does not correlate to the abundance of the complementary sense transcripts at that locus or to transcription levels at neighboring loci. These data suggest that sterile antisense transcripts are not simply a local effect of open chromatin structure. Using 5 ' RACE, we demonstrate that Giardia promoters are a source of antisense transcripts through bidirectional transcription, producing both downstream coding sense and upstream sterile antisense transcripts. We use a dual reporter system to explore roles of specific promoter elements in this bidirectional initiation of transcription and suggest that the degenerate AT-rich nature of TATA and Inr elements in Giardia permits them to function interchangeably. The phenomenon of bidirectional transcription in G. lamblia gives us insight into the interaction between transcriptional machinery and promoter elements, and may be the prominent source of the abundant antisense transcription in this parasite.
机译:贾第鞭毛虫的转录的突出特征是无菌反义转录物的大量产生(Elmendorf等人,贾第鞭毛虫的无菌转录物的丰富。NucleicAcids。,29,4674-4683)。在这里,我们使用SAGE数据的计算生物学分析来评估寄生虫基因组中有义和反义信息的丰度和分布。不育的反义转录物在大约50%的具有可检测转录的基因座处产生,但是它们在给定基因座处的丰度与该位置的互补有义转录物的丰度或邻近基因座的转录水平不相关。这些数据表明,无菌的反义转录物不仅是染色质开放结构的局部作用。使用5'RACE,我们证明了贾第鞭毛虫启动子是通过双向转录的反义转录物的来源,产生下游编码有义和上游无菌反义转录物。我们使用双重报告系统来探索特定的启动子元件在这种双向双向转录中的作用,并建议在贾第鞭毛虫中退化的富含AT的TATA和Inr元件性质可以使它们互换运行。 G. lamblia中的双向转录现象使我们深入了解了转录机制与启动子元件之间的相互作用,并且可能是该寄生虫中大量反义转录的重要来源。

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