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dsRNA with 5′ overhangs contributes to endogenous and antiviral RNA silencing pathways in plants

机译:具有5突出端的dsRNA有助于植物的内源性和抗病毒RNA沉默途径

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摘要

In plants, SGS3 and RNA-dependent RNA polymerase 6 (RDR6) are required to convert single- to double-stranded RNA (dsRNA) in the innate RNAi-based antiviral response and to produce both exogenous and endogenous short-interfering RNAs. Although a role for RDR6-catalysed RNA-dependent RNA polymerisation in these processes seems clear, the function of SGS3 is unknown. Here, we show that SGS3 is a dsRNA-binding protein with unexpected substrate selectivity favouring 5′-overhang-containing dsRNA. The conserved XS and coiled-coil domains are responsible for RNA-binding activity. Furthermore, we find that the V2 protein from tomato yellow leaf curl virus, which suppresses the RNAi-based host immune response, is a dsRNA-binding protein with similar specificity to SGS3. In competition-binding experiments, V2 outcompetes SGS3 for substrate dsRNA recognition, whereas a V2 point mutant lacking the suppressor function in vivo cannot efficiently overcome SGS3 binding. These findings suggest that SGS3 recognition of dsRNA containing a 5′ overhang is required for subsequent steps in RNA-mediated gene silencing in plants, and that V2 functions as a viral suppressor by preventing SGS3 from accessing substrate RNAs.
机译:在植物中,需要SGS3和RNA依赖性RNA聚合酶6(RDR6)在基于天然RNAi的抗病毒反应中将单链RNA转换为双链RNA(dsRNA),并产生外源性和内源性短干扰RNA。尽管在这些过程中RDR6催化的RNA依赖性RNA聚合的作用似乎很明显,但SGS3的功能尚不清楚。在这里,我们显示SGS3是一种dsRNA结合蛋白,具有意想不到的底物选择性,有利于含有5'端的dsRNA。保守的XS和卷曲螺旋结构域负责RNA结合活性。此外,我们发现来自番茄黄叶卷曲病毒的V2蛋白可抑制基于RNAi的宿主免疫反应,是一种与SGS3具有相似特异性的dsRNA结合蛋白。在竞争结合实验中,V2在底物dsRNA识别方面胜过SGS3,而体内缺乏抑制功能的V2点突变体无法有效克服SGS3结合。这些发现表明,植物中RNA介导的基因沉默的后续步骤需要SGS3识别含有5'突出端的dsRNA,并且V2通过阻止SGS3访问底物RNA而起病毒抑制作用。

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