Takeda Atsushi, Iwasaki Shintaro, Watanabe Toshiaki, Utsumi Maki, Watanabe Yuichiro
Department of Life Sciences, Graduate School of Arts and Sciences, The University of Tokyo, Komaba 3-8-1, Meguro-ku, Tokyo 153-8902, Japan.
Plant Cell Physiol. 2008 Apr;49(4):493-500. doi: 10.1093/pcp/pcn043. Epub 2008 Mar 14.
Double-stranded RNA induces RNA silencing and is cleaved into 21-24 nt small RNA duplexes by Dicer enzyme. A strand of Dicer-generated small RNA duplex (called the guide strand) is then selected by a thermodynamic mechanism to associate with Argonaute (AGO) protein. This AGO-small RNA complex functions to cleave mRNA, repress translation or modify chromatin structure in a sequence-specific manner. Although a model plant, Arabidopsis thaliana, contains 10 AGO genes, their roles and molecular mechanisms remain obscure. In this study, we analyzed the roles of Arabidopsis AGO2 and AGO5. Interestingly, the 5' nucleotide of small RNAs that associated with AGO2 was mainly adenine (85.7%) and that with AGO5 was mainly cytosine (83.5%). Small RNAs that were abundantly cloned from the AGO2 immunoprecipitation fraction (miR163-LL, which is derived from the Lower Left of mature miR163 in pre-miR163, and miR390) and from the AGO5 immunoprecipitation fraction (miR163-UL, which is derived from the Upper Left of mature miR163 in pre-miR163, and miR390()) are derived from the single small RNA duplexes, miR163-LL/miR163-UL and miR390/miR390(). Each strand of the miR163-LL/miR163-UL duplex is selectively sorted to associate with AGO2 or AGO5 in a 5' nucleotide-dependent manner rather than in a thermodynamic stability-dependent manner. Furthermore, we showed that both AGO2 and AGO5 have the ability to bind cucumber mosaic virus-derived small RNAs. These results clearly indicate that the mechanism selecting the guide strand is different among AGO proteins and that multiple AGO genes are involved in anti-virus defense in plants.
双链RNA诱导RNA沉默,并被Dicer酶切割成21 - 24个核苷酸的小RNA双链体。然后,通过一种热力学机制选择Dicer产生的小RNA双链体中的一条链(称为引导链)与Argonaute(AGO)蛋白结合。这种AGO - 小RNA复合物以序列特异性方式发挥作用,切割mRNA、抑制翻译或修饰染色质结构。尽管模式植物拟南芥含有10个AGO基因,但其作用和分子机制仍不清楚。在本研究中,我们分析了拟南芥AGO2和AGO5的作用。有趣的是,与AGO2相关的小RNA的5'核苷酸主要是腺嘌呤(85.7%),而与AGO5相关的主要是胞嘧啶(83.5%)。从AGO2免疫沉淀组分(miR163 - LL,其来源于前体miR163中成熟miR163的左下角,以及miR390)和AGO5免疫沉淀组分(miR163 - UL,其来源于前体miR163中成熟miR163的左上角,以及miR390())中大量克隆的小RNA源自单个小RNA双链体,即miR163 - LL/miR163 - UL和miR390/miR390()。miR163 - LL/miR163 - UL双链体的每条链以5'核苷酸依赖性方式而非热力学稳定性依赖性方式选择性地分选与AGO2或AGO5结合。此外,我们表明AGO2和AGO5都具有结合黄瓜花叶病毒衍生的小RNA的能力。这些结果清楚地表明,AGO蛋白之间选择引导链的机制不同,并表明多个AGO基因参与植物的抗病毒防御。