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RNAi Screen Indicates Widespread Biological Function for Human Natural Antisense Transcripts

机译:RNAi屏幕表明人类天然反义转录本的广泛的生物学功能

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Natural antisense transcripts represent a class of regulatory RNA molecules, which are characterized by their complementary sequence to another RNA transcript. Extensive sequencing efforts suggest that natural antisense transcripts are prevalent throughout the mammalian genome; however, their biological significance has not been well defined. We performed a loss-of-function RNA interference (RNAi) screen, which targeted 797 evolutionary conserved antisense transcripts, and found evidence for a regulatory role for a number of natural antisense transcripts. Specifically, we found that natural antisense transcripts for CCPG1 and RAPGEF3 may functionally disrupt signaling pathways and corresponding biological phenotypes, such as cell viability, either independently or in parallel with the corresponding sense transcript. Our results show that the large-scale siRNA screen can be applied to evaluate natural antisense transcript modulation of fundamental cellular events.
机译:天然反义转录物代表一类调节性RNA分子,其特征在于它们与另一种RNA转录物的互补序列。广泛的测序工作表明,天然反义转录本在整个哺乳动物基因组中都很普遍。但是,它们的生物学意义尚未得到很好的定义。我们进行了功能丧失的RNA干扰(RNAi)筛选,该筛选针对797个进化保守的反义转录本,并找到了对许多天然反义转录本起调控作用的证据。具体而言,我们发现CCPG1和RAPGEF3的天然反义转录物可以在功能上破坏信号通路和相应的生物学表型,例如细胞活力,独立或与相应的有义转录物并行。我们的结果表明,大规模的siRNA筛选可用于评估基本细胞事件的天然反义转录调控。

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