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首页> 外文期刊>Molecular cell >Reaction Mechanisms of Pol IV, RDR2, and DCL3 Drive RNA Channeling in the siRNA-Directed DNA Methylation Pathway
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Reaction Mechanisms of Pol IV, RDR2, and DCL3 Drive RNA Channeling in the siRNA-Directed DNA Methylation Pathway

机译:POL IV,RDR2和DCL3驱动RNA在siRNA定向的DNA甲基化途径中的反应机制

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In eukaryotes with multiple small RNA pathways, the mechanisms that channel RNAs within specific pathways are unclear. Here, we reveal the reactions that account for channeling in the small interfering RNA (siRNA) biogenesis phase of the Arabidopsis RNA-directed DNA methylation pathway. The process begins with template DNA transcription by NUCLEAR RNA POLYMERASE IV (Pol IV), whose atypical termination mechanism, induced by nontemplate DNA base-pairing, channels transcripts to the associated RNA-dependent RNA polymerase RDR2. RDR2 converts Pol IV transcripts into double-stranded RNAs and then typically adds an extra untemplated 3' terminal nucleotide to the second strands. The dicer endonuclease DCL3 cuts resulting duplexes to generate 24- and 23-nt siRNAs. The 23-nt RNAs bear the untemplated terminal nucleotide of the RDR2 strand and are underrepresented among ARGONAUTE4-associated siRNAs. Collectively, our results provide mechanistic insights into Pol IV termination, Pol IV-RDR2 coupling, and RNA channeling, from template DNA transcription to siRNA strand discrimination.
机译:在具有多个小RNA途径的真核生物中,在特定途径内沟通RNA的机制尚不清楚。在这里,我们揭示了在拟南芥RNA指导的DNA甲基化途径的小干扰RNA(siRNA)生物发生阶段中的窜入的反应。该过程开始于核RNA聚合酶IV(POL IV)的模板DNA转录,其非典型终止机制由Nontemplate DNA碱基碱基诱导,通道转录物到相关的RNA依赖性RNA聚合酶RDR2。 RDR2将POL IV转录物转化为双链RNA,然后通常将额外的未预期的3'末端核苷酸添加到第二股。 Dicer内切核酸酶DCL3切割产生的双链体以产生24-和23-NT siRNA。 23-nt RNA承受RDR2链的未预期末端核苷酸,并且在Argonaute4相关的siRNA中持代表性。集体,我们的结果为Pol IV终止,POL IV-RDR2偶联和RNA通道提供机械洞察,从模板DNA转录到siRNA族歧视。

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