Zhang Xiaoyu, Henderson Ian R, Lu Cheng, Green Pamela J, Jacobsen Steven E
Department of Molecular, Cell, and Developmental Biology, University of California-Los Angeles, Los Angeles, CA 90095, USA.
Proc Natl Acad Sci U S A. 2007 Mar 13;104(11):4536-41. doi: 10.1073/pnas.0611456104. Epub 2007 Mar 5.
In addition to the three RNA polymerases (RNAP I-III) shared by all eukaryotic organisms, plant genomes encode a fourth RNAP (RNAP IV) that appears to be specialized in the production of siRNAs. Available data support a model in which dsRNAs are generated by RNAP IV and RNA-dependent RNAP 2 (RDR2) and processed by DICER (DCL) enzymes into 21- to 24-nt siRNAs, which are associated with different ARGONAUTE (AGO) proteins for transcriptional or posttranscriptional gene silencing. However, it is not yet clear what fraction of genomic siRNA production is RNAP IV-dependent, and to what extent these siRNAs are preferentially processed by certain DCL(s) or associated with specific AGOs for distinct downstream functions. To address these questions on a genome-wide scale, we sequenced approximately 335,000 siRNAs from wild-type and RNAP IV mutant Arabidopsis plants by using 454 technology. The results show that RNAP IV is required for the production of >90% of all siRNAs, which are faithfully produced from a discrete set of genomic loci. Comparisons of these siRNAs with those accumulated in rdr2 and dcl2 dcl3 dcl4 and those associated with AGO1 and AGO4 provide important information regarding the processing, channeling, and functions of plant siRNAs. We also describe a class of RNAP IV-independent siRNAs produced from endogenous single-stranded hairpin RNA precursors.
除了所有真核生物共有的三种RNA聚合酶(RNA聚合酶I - III)外,植物基因组还编码了第四种RNA聚合酶(RNA聚合酶IV),它似乎专门负责生成小干扰RNA(siRNA)。现有数据支持这样一种模型:双链RNA(dsRNA)由RNA聚合酶IV和RNA依赖性RNA聚合酶2(RDR2)生成,并由Dicer(DCL)酶加工成21至24个核苷酸的siRNA,这些siRNA与不同的AGO(AGO)蛋白结合,用于转录或转录后基因沉默。然而,目前尚不清楚基因组siRNA产生中依赖RNA聚合酶IV的比例是多少,以及这些siRNA在多大程度上被某些DCL优先加工,或与特定的AGO结合以实现不同的下游功能。为了在全基因组范围内解决这些问题,我们使用454技术对野生型和RNA聚合酶IV突变拟南芥植物中约335,000个siRNA进行了测序。结果表明,RNA聚合酶IV是产生所有siRNA中>90%所必需的,这些siRNA是从一组离散的基因组位点忠实地产生的。将这些siRNA与rdr2、dcl2 dcl3 dcl4中积累的siRNA以及与AGO1和AGO4相关的siRNA进行比较,为植物siRNA的加工、导向和功能提供了重要信息。我们还描述了一类由内源性单链发夹RNA前体产生的不依赖RNA聚合酶IV的siRNA。