Wang Feng, Axtell Michael J
Intercollege Plant Biology Ph.D. Program, Huck Institutes of the Life Sciences, Penn State University, University Park, PA, 16802, USA.
Department of Biology, Penn State University, University Park, PA, 16802, USA.
Plant J. 2017 Apr;90(1):37-47. doi: 10.1111/tpj.13463. Epub 2017 Feb 11.
In plants, 24 nucleotide long heterochromatic siRNAs (het-siRNAs) transcriptionally regulate gene expression by RNA-directed DNA methylation (RdDM). The biogenesis of most het-siRNAs depends on the plant-specific RNA polymerase IV (Pol IV), and ARGONAUTE4 (AGO4) is a major het-siRNA effector protein. Through genome-wide analysis of sRNA-seq data sets, we found that AGO4 is required for the accumulation of a small subset of het-siRNAs. The accumulation of AGO4-dependent het-siRNAs also requires several factors known to participate in the effector portion of the RdDM pathway, including RNA POLYMERASE V (POL V), DOMAINS REARRANGED METHYLTRANSFERASE 2 (DRM2) and SAWADEE HOMEODOMAIN HOMOLOGUE 1 (SHH1). Like many AGO proteins, AGO4 is an endonuclease that can 'slice' RNAs. We found that a slicing-defective AGO4 was unable to fully recover AGO4-dependent het-siRNA accumulation from ago4 mutant plants. Collectively, our data suggest that AGO4-dependent siRNAs are secondary siRNAs dependent on the prior activity of the RdDM pathway at certain loci.
在植物中,24个核苷酸长的异染色质小干扰RNA(het-siRNAs)通过RNA指导的DNA甲基化(RdDM)在转录水平上调控基因表达。大多数het-siRNAs的生物合成依赖于植物特有的RNA聚合酶IV(Pol IV),而AGO4是一种主要的het-siRNA效应蛋白。通过对小RNA测序数据集的全基因组分析,我们发现AGO4是一小部分het-siRNAs积累所必需的。AGO4依赖的het-siRNAs的积累还需要几个已知参与RdDM途径效应部分的因子,包括RNA聚合酶V(POL V)、结构域重排甲基转移酶2(DRM2)和SAWADEE同源结构域同源物1(SHH1)。与许多AGO蛋白一样,AGO4是一种能够“切割”RNA的核酸内切酶。我们发现,一个切割缺陷型AGO4无法从ago4突变体植物中完全恢复AGO4依赖的het-siRNA积累。总的来说,我们的数据表明,AGO4依赖的小干扰RNA是依赖于RdDM途径在某些位点的先前活性的二级小干扰RNA。