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Trypanosome spliced leader RNA genes contain the first identified RNA polymerase II gene promoter in these organisms

机译:锥虫剪的前导RNA 基因包含第一个鉴定出的RNA聚合酶II基因启动子 在这些生物中

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摘要

Typical general transcription factors, such as TATA binding protein and TFII B, have not yet been identified in any member of the Trypanosomatidae family of parasitic protozoa. Interestingly, mRNA coding genes do not appear to have discrete transcriptional start sites, although in most cases they require an RNA polymerase that has the biochemical properties of eukaryotic RNA polymerase II. A discrete transcription initiation site may not be necessary for mRNA synthesis since the sequences upstream of each transcribed coding region are trimmed from the nascent transcript when a short m7G-capped RNA is added during mRNA maturation. This short 39 nt m7G-capped RNA, the spliced leader (SL) sequence, is expressed as an ∼100 nt long RNA from a set of reiterated, though independently transcribed, genes in the trypanosome genome. Punctuation of the 5′ end of mRNAs by a m7G cap-containing spliced leader is a developing theme in the lower eukaryotic world; organisms as diverse as Euglena and nematode worms, including Caenorhabditis elegans, utilize SL RNA in their mRNA maturation programs. Towards understanding the coordination of SL RNA and mRNA expression in trypanosomes, we have begun by characterizing SL RNA gene expression in the model trypanosome Leptomonas seymouri. Using a homologous in vitro transcription system, we demonstrate in this study that the SL RNA is transcribed by RNA polymerase II. During SL RNA transcription, accurate initiation is determined by an initiator element with a loose consensus of CYAC/AYR(+1). This element, as well as two additional basal promoter elements, is divergent in sequence from the basal transcription elements seen in other eukaryotic gene promoters. We show here that the in vitro transcription extract contains a binding activity that is specific for the initiator element and thus may participate in recruiting RNA polymerase II to the SL RNA gene promoter.
机译:在寄生原生动物的锥虫科的任何成员中,尚未鉴定出典型的一般转录因子,例如TATA结合蛋白和TFIIB。有趣的是,mRNA编码基因似乎没有离散的转录起始位点,尽管在大多数情况下,它们需要具有真核RNA聚合酶II的生化特性的RNA聚合酶。对于mRNA合成而言,离散的转录起始位点可能不是必需的,因为在mRNA的成熟过程中添加短的m 7 G帽RNA时,每个转录的编码区上游的序列都会从新生的转录本中修剪掉。这种短的39 nt m 7 G封闭的RNA(剪接的前导(SL)序列)表达为来自锥虫基因组中一组经过重申但独立转录的基因的〜100 nt长RNA 。含m 7 G帽的剪接前导体对mRNA 5'端的标点在低等真核生物世界中正在发展。包括秀丽隐杆线虫在内的各种生物,包括裸藻和线虫,都在其mRNA成熟程序中利用了SL RNA。 理解SL RNA和mRNA表达的协调 在锥虫中,我们从表征SL RNA基因表达开始 在模型锥虫Leptomonas seymouri模型中。使用 一个同源的体外转录系统 在这项研究中证明SL RNA被RNA转录 聚合酶II。在SL RNA转录过程中,准确的起始 由一个发起者元素确定,其共识为 CYAC / AYR(+1)。这个元素,以及另外两个 基底启动子元件,在序列上与基底不同 在其他真核基因启动子中看到的转录元件。 我们在这里显示了体外转录提取物 包含特定于启动器元素的绑定活动 因此可能参与将RNA聚合酶II募集到 SL RNA基因启动子。

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