Laboratory of Silkworm Science, Graduate School of Bioresource and Bioenvironmental Sciences, Kyushu University, Fukuoka, Japan.
Insect Mol Biol. 2013 Jun;22(3):320-30. doi: 10.1111/imb.12023. Epub 2013 Mar 24.
Small RNA-mediated gene silencing is a fundamental gene regulatory mechanism, which is conserved in many organisms. Argonaute (Ago) family proteins in the RNA-induced silencing complex (RISC) play crucial roles in RNA interference (RNAi) pathways. In the silkworm Bombyx mori, four Ago proteins have been identified, named as Ago1, Ago2, Ago3 and Siwi. Ago2 participates in double-stranded RNA (dsRNA)-induced RNAi, whereas Ago3 and Siwi are involved in the Piwi-interacting RNA (piRNA) pathway. However, there is no experimental evidence concerning silkworm Ago1 (BmAgo1) in the RNAi mechanism. In the present study, we analysed the function of BmAgo1 in the microRNA (miRNA)-mediated RNAi pathway using tethering and miRNA sensor reporter assays. These results clearly demonstrate that BmAgo1 plays an indispensable role in translation repression in silkworm. Moreover, coimmunoprecipitation data indicated that BmAgo1 interacts with BmDcp2, an orthologue of mRNA-decapping enzyme 2 (Dcp2) protein in the Drosophila processing-bodies (P-bodies). Substitutions of two conserved phenylalanines (F522 and F557) by valines in the MC motif strongly impaired the function of BmAgo1 in translation repression and its localization in P-bodies, suggesting that these two amino acid residues in the MC motif of BmAgo1 are prerequisites for mRNA translation repression in B. mori.
小 RNA 介导的基因沉默是一种基本的基因调控机制,在许多生物中都保守存在。Argonaute(AGO)家族蛋白在 RNA 诱导沉默复合物(RISC)中发挥关键作用,参与 RNA 干扰(RNAi)途径。在家蚕 Bombyx mori 中,已经鉴定出四种 AGO 蛋白,分别命名为 Ago1、Ago2、Ago3 和 Siwi。Ago2 参与双链 RNA(dsRNA)诱导的 RNAi,而 Ago3 和 Siwi 则参与 Piwi 相互作用 RNA(piRNA)途径。然而,关于家蚕 Ago1(BmAgo1)在 RNAi 机制中的作用,还没有实验证据。在本研究中,我们使用系绳和 miRNA 传感器报告基因检测,分析了 BmAgo1 在 microRNA(miRNA)介导的 RNAi 途径中的功能。这些结果清楚地表明,BmAgo1 在翻译抑制中在家蚕中发挥不可或缺的作用。此外,免疫共沉淀数据表明,BmAgo1 与 BmDcp2 相互作用,BmDcp2 是果蝇加工体(P 体)中 mRNA 脱帽酶 2(Dcp2)蛋白的同源物。MC 基序中的两个保守苯丙氨酸(F522 和 F557)突变为缬氨酸强烈削弱了 BmAgo1 在翻译抑制和其在 P 体中的定位的功能,表明 BmAgo1 的 MC 基序中的这两个氨基酸残基是 B. mori 中 mRNA 翻译抑制所必需的。