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Induction of Gene Silencing by Hairpin RNA Expression in Tetrahymena thermophila Reveals a Second Small RNA Pathway

机译:在嗜热四膜膜虫中由发夹RNA表达诱导基因沉默揭示了第二条小RNA途径。

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摘要

Unlike in other eukaryotes, in which it causes gene silencing, RNA interference (RNAi) has been linked to programmed DNA deletion in the ciliate Tetrahymena thermophila. Here we have developed an efficient method to inducibly express double-stranded RNA hairpins and demonstrated that they cause gene silencing through targeted mRNA degradation in all phases of the life cycle, including growth, starvation, and mating. This technique offers a new tool for gene silencing in this model organism. Induction of RNA hairpins causes dramatic upregulation of Dicer and Argonaute family genes, revealing a system capable of rapidly responding to double-stranded RNA. These hairpins are processed into 23- to 24-nucleotide (nt) small RNAs, which are distinctly different from the 28- to 30-nt small RNAs known to be associated with DNA deletion. Thus, two different small RNA pathways appear to be responsible for gene silencing and DNA deletion. Surprisingly, expression of the RNA hairpin also causes targeted DNA deletion during conjugation, although at low efficiencies, which suggests a possible crossover of these two molecular paths.
机译:与其他导致基因沉默的真核生物不同,RNA干扰(RNAi)与纤毛四膜虫嗜热菌中的程序性DNA缺失有关。在这里,我们已经开发出一种有效的方法来诱导性表达双链RNA发夹,并证明了它们在生命周期的所有阶段(包括生长,饥饿和交配)通过定向的mRNA降解引起基因沉默。该技术为该模型生物中的基因沉默提供了新工具。 RNA发夹的诱导导致Dicer和Argonaute家族基因急剧上调,从而揭示了一种能够快速响应双链RNA的系统。这些发夹被加工成23至24个核苷酸(nt)的小RNA,与已知与DNA缺失相关的28至30 nt的小RNA明显不同。因此,两个不同的小RNA途径似乎负责基因沉默和DNA缺失。出乎意料的是,RNA发夹的表达在结合过程中也导致靶向的DNA缺失,尽管效率很低,这表明这两种分子路径可能交叉。

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