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Intergenic transcription by RNA Polymerase II coordinates Pol IV and Pol V in siRNA-directed transcriptional gene silencing in Arabidopsis

机译:RNA聚合酶II的基因间转录可协调拟南芥中siRNA定向转录基因沉默中的Pol IV和Pol V

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摘要

Intergenic transcription by RNA Polymerase II (Pol II) is widespread in plant and animal genomes, but the functions of intergenic transcription or the resulting noncoding transcripts are poorly understood. Here, we show that Arabidopsis Pol II is indispensable for endogenous siRNA-mediated transcriptional gene silencing (TGS) at intergenic low-copy-number loci, despite the presence of two other polymerases—Pol IV and Pol V—that specialize in TGS through siRNAs. We show that Pol II produces noncoding scaffold transcripts that originate outside of heterochromatic, siRNA-generating loci. Through these transcripts and physical interactions with the siRNA effector protein ARGONAUTE4 (AGO4), Pol II recruits AGO4/siRNAs to homologous loci to result in TGS. Meanwhile, Pol II transcription also recruits Pol IV and Pol V to different locations at heterochromatic loci to promote siRNA biogenesis and siRNA-mediated TGS, respectively. This study establishes that intergenic transcription by Pol II is required for siRNA-mediated TGS, and reveals an intricate collaboration and division of labor among the three polymerases in gene silencing.
机译:RNA聚合酶II(Pol II)进行的基因间转录广泛存在于植物和动物基因组中,但人们对基因间转录的功能或产生的非编码转录本的了解却很少。在这里,我们显示了拟南芥Pol II对于基因间低拷贝数位点的内源siRNA介导的转录基因沉默(TGS)来说是必不可少的,尽管存在另外两种聚合酶-Pol IV和Pol V-通过siRNA专门用于TGS 。我们显示,Pol II产生非编码支架转录物,该转录物起源于异色的siRNA生成基因座。通过这些转录本以及与siRNA效应蛋白ARGONAUTE4(AGO4)的物理相互作用,Pol II将AGO4 / siRNA募集到同源基因座,从而产生TGS。同时,Pol II转录也将Pol IV和Pol V募集到异色基因座的不同位置,以分别促进siRNA生物发生和siRNA介导的TGS。这项研究确定了siRNA介导的TGS需要通过Pol II进行基因间转录,并揭示了基因沉默中这三种聚合酶之间的复杂协作和分工。

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