SINE RNA在拟南芥中诱导严重的发育缺陷,并与DCL1复合体的关键成员HYL1(DRB1)相互作用。

SINE RNA induces severe developmental defects in Arabidopsis thaliana and interacts with HYL1 (DRB1), a key member of the DCL1 complex.

作者信息

Pouch-Pélissier Marie-Noëlle, Pélissier Thierry, Elmayan Taline, Vaucheret Hervé, Boko Drasko, Jantsch Michael F, Deragon Jean-Marc

机构信息

Université de Perpignan Via Domitia, CNRS UMR5096 LGDP, Perpignan, France.

出版信息

PLoS Genet. 2008 Jun 13;4(6):e1000096. doi: 10.1371/journal.pgen.1000096.

Abstract

The proper temporal and spatial expression of genes during plant development is governed, in part, by the regulatory activities of various types of small RNAs produced by the different RNAi pathways. Here we report that transgenic Arabidopsis plants constitutively expressing the rapeseed SB1 SINE retroposon exhibit developmental defects resembling those observed in some RNAi mutants. We show that SB1 RNA interacts with HYL1 (DRB1), a double-stranded RNA-binding protein (dsRBP) that associates with the Dicer homologue DCL1 to produce microRNAs. RNase V1 protection assays mapped the binding site of HYL1 to a SB1 region that mimics the hairpin structure of microRNA precursors. We also show that HYL1, upon binding to RNA substrates, induces conformational changes that force single-stranded RNA regions to adopt a structured helix-like conformation. Xenopus laevis ADAR1, but not Arabidopsis DRB4, binds SB1 RNA in the same region as HYL1, suggesting that SINE RNAs bind only a subset of dsRBPs. Consistently, DCL4-DRB4-dependent miRNA accumulation was unchanged in SB1 transgenic Arabidopsis, whereas DCL1-HYL1-dependent miRNA and DCL1-HYL1-DCL4-DRB4-dependent tasiRNA accumulation was decreased. We propose that SINE RNA can modulate the activity of the RNAi pathways in plants and possibly in other eukaryotes.

摘要

植物发育过程中基因在时间和空间上的正确表达,部分受不同RNA干扰途径产生的各类小RNA调控活性的支配。在此,我们报道组成型表达油菜SB1 SINE反转录转座子的转基因拟南芥植株表现出与某些RNA干扰突变体中观察到的类似发育缺陷。我们表明,SB1 RNA与HYL1(DRB1)相互作用,HYL1是一种双链RNA结合蛋白(dsRBP),它与Dicer同源物DCL1结合以产生微小RNA。RNase V1保护分析将HYL1的结合位点定位到SB1的一个区域,该区域模拟微小RNA前体的发夹结构。我们还表明,HYL1在与RNA底物结合后会诱导构象变化,迫使单链RNA区域呈现出类似结构化螺旋的构象。非洲爪蟾ADAR1,而非拟南芥DRB4,在与HYL1相同的区域结合SB1 RNA,这表明SINE RNA仅结合dsRBP的一个子集。一致地,在SB1转基因拟南芥中,DCL4 - DRB4依赖性的微小RNA积累没有变化,而DCL1 - HYL1依赖性的微小RNA以及DCL1 - HYL1 - DCL4 - DRB4依赖性的反式作用小干扰RNA积累减少。我们提出,SINE RNA可以调节植物以及可能其他真核生物中RNA干扰途径的活性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/12eb/2408557/af34faf9d656/pgen.1000096.g001.jpg

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