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Post-transcriptional gene silencing triggered by sense transgenes involves uncapped antisense RNA and differs from silencing intentionally triggered by antisense transgenes

机译:有义转基因触发的转录后基因沉默涉及无上限的反义RNA,与反义转基因故意触发的沉默不同

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Although post-transcriptional gene silencing (PTGS) has been studied for more than a decade, there is still a gap in our understanding of how de novo silencing is initiated against genetic elements that are not supposed to produce double-stranded (ds)RNA. Given the pervasive transcription occurring throughout eukaryote genomes, we tested the hypothesis that unintended transcription could produce antisense (as)RNA molecules that participate to the initiation of PTGS triggered by sense transgenes (S-PTGS). Our results reveal a higher level of asRNA in Arabidopsis thaliana lines that spontaneously trigger S-PTGS than in lines that do not. However, PTGS triggered by antisense transgenes (AS-PTGS) differs from S-PTGS. In particular, a hypomorphic ago1 mutation that suppresses S-PTGS prevents the degradation of asRNA but not sense RNA during AS-PTGS, suggesting a different treatment of coding and non-coding RNA by AGO1, likely because of AGO1 association to polysomes. Moreover, the intended asRNA produced during AS-PTGS is capped whereas the asRNA produced during S-PTGS derives from 3′ maturation of a read-through transcript and is uncapped. Thus, we propose that uncapped asRNA corresponds to the aberrant RNA molecule that is converted to dsRNA by RNA-DEPENDENT RNA POLYMERASE 6 in siRNA-bodies to initiate S-PTGS, whereas capped asRNA must anneal with sense RNA to produce dsRNA that initiate AS-PTGS.
机译:尽管转录后基因沉默(PTGS)的研究已经进行了十多年,但在我们如何从头沉默针对不应该产生双链(ds)RNA的遗传元件的认识上仍然存在空白。考虑到整个真核生物基因组中普遍存在的转录,我们测试了以下假设:意外转录可能会产生反义(as)RNA分子,参与有义转基因(S-PTGS)触发的PTGS的启动。我们的结果显示,自发触发S-PTGS的拟南芥品系中的asRNA水平高于未自发触发的S-PTGS。然而,反义转基因(AS-PTGS)触发的PTGS与S-PTGS不同。特别是,抑制S-PTGS的亚型ago1突变可防止AS-PTGS期间asRNA的降解,但不能感知RNA,表明AGO1对编码和非编码RNA的不同处理,可能是由于AGO1与多核糖体相关。此外,将在AS-PTGS期间产生的预期asRNA进行了封顶,而在S-PTGS期间产生的asRNA则来自于通读转录本的3'成熟,并且没有被封端。因此,我们建议未封端的asRNA对应于异常RNA分子,该异常RNA分子通过siRNA体中的依赖于RNA的RNA聚合酶6转化为dsRNA以引发S-PTGS,而被封端的asRNA必须与有义RNA退火以产生可引发AS-的dsRNA。 PTGS。

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