Fátyol Károly, Ludman Márta, Burgyán József
Agricultural Biotechnology Institute, National Agricultural Research and Innovation Centre Szent-Györgyi Albert u. 4. Gödöllő 2100, Hungary
Agricultural Biotechnology Institute, National Agricultural Research and Innovation Centre Szent-Györgyi Albert u. 4. Gödöllő 2100, Hungary.
Nucleic Acids Res. 2016 Feb 18;44(3):1384-97. doi: 10.1093/nar/gkv1371. Epub 2015 Dec 15.
RNA guided ribonuclease complexes play central role in RNA interference. Members of the evolutionarily conserved Argonaute protein family form the catalytic cores of these complexes. Unlike a number of other plant Argonautes, the role of AGO2 has been obscure until recently. Newer data, however, have indicated its involvement in various biotic and abiotic stress responses. Despite its suggested importance, there is no detailed characterization of this protein to date. Here we report cloning and molecular characterization of the AGO2 protein of the virological model plant Nicotiana benthamiana. We show that AGO2 can directly repress translation via various miRNA target site constellations (ORF, 3' UTR). Interestingly, although AGO2 seems to be able to silence gene expression in a slicing independent fashion, its catalytic activity is still a prerequisite for efficient translational repression. Additionally, mismatches between the 3' end of the miRNA guide strand and the 5' end of the target site enhance gene silencing by AGO2. Several functionally important amino acid residues of AGO2 have been identified that affect its small RNA loading, cleavage activity, translational repression potential and antiviral activity. The data presented here help us to understand how AGO2 aids plants to deal with stress.
RNA引导的核糖核酸酶复合物在RNA干扰中起核心作用。进化上保守的AGO蛋白家族成员构成了这些复合物的催化核心。与许多其他植物AGO蛋白不同,AGO2的作用直到最近还不清楚。然而,最新数据表明它参与了各种生物和非生物胁迫反应。尽管其重要性已得到暗示,但迄今为止尚无对该蛋白的详细表征。在此,我们报告了病毒学模式植物本氏烟草AGO2蛋白的克隆及分子特征。我们表明,AGO2可通过各种miRNA靶位点组合(开放阅读框、3'非翻译区)直接抑制翻译。有趣的是,尽管AGO2似乎能够以不依赖切割的方式沉默基因表达,但其催化活性仍是有效翻译抑制的先决条件。此外,miRNA引导链的3'末端与靶位点的5'末端之间的错配增强了AGO2介导的基因沉默。已鉴定出AGO2的几个功能重要的氨基酸残基,它们影响其小RNA装载、切割活性、翻译抑制潜力和抗病毒活性。本文提供的数据有助于我们理解AGO2如何帮助植物应对胁迫。