Department of Chemistry, Faculty of Science, Fukuoka University, Jonan-ku, Fukuoka 814-0180, Japan.
RNA. 2012 Sep;18(9):1735-44. doi: 10.1261/rna.033399.112. Epub 2012 Jul 13.
Substitutional RNA editing plays a crucial role in the regulation of biological processes. Cleavage of target RNA that depends on the specific site of substitutional RNA editing is a useful tool for analyzing and regulating intracellular processes related to RNA editing. Hammerhead ribozymes have been utilized as small catalytic RNAs for cleaving target RNA at a specific site and may be used for RNA-editing-specific RNA cleavage. Here we reveal a design strategy for a hammerhead ribozyme that specifically recognizes adenosine to inosine (A-to-I) and cytosine to uracil (C-to-U) substitutional RNA-editing sites and cleaves target RNA. Because the hammerhead ribozyme cleaves one base upstream of the target-editing site, the base that pairs with the target-editing site was utilized for recognition. RNA-editing-specific ribozymes were designed such that the recognition base paired only with the edited base. These ribozymes showed A-to-I and C-to-U editing-specific cleavage activity against synthetic serotonin receptor 2C and apolipoprotein B mRNA fragments in vitro, respectively. Additionally, the ribozyme designed for recognizing A-to-I RNA editing at the Q/R site on filamin A (FLNA) showed editing-specific cleavage activity against physiologically edited FLNA mRNA extracted from cells. We demonstrated that our strategy is effective for cleaving target RNA in an editing-dependent manner. The data in this study provided an experimental basis for the RNA-editing-dependent degradation of specific target RNA in vivo.
取代性 RNA 编辑在调控生物过程中发挥着关键作用。依赖于取代性 RNA 编辑特定位置的靶 RNA 切割是分析和调控与 RNA 编辑相关的细胞内过程的有用工具。锤头核酶已被用作在特定位置切割靶 RNA 的小催化 RNA,可用于 RNA 编辑特异性 RNA 切割。在这里,我们揭示了一种锤头核酶的设计策略,该核酶特异性识别腺苷到肌苷(A-to-I)和胞嘧啶到尿嘧啶(C-to-U)取代性 RNA 编辑位点,并切割靶 RNA。由于锤头核酶在靶编辑位点的上游切割一个碱基,因此利用与靶编辑位点配对的碱基进行识别。RNA 编辑特异性核酶的设计使得识别碱基仅与编辑碱基配对。这些核酶分别对合成的 5-羟色胺受体 2C 和载脂蛋白 B mRNA 片段表现出 A-to-I 和 C-to-U 编辑特异性切割活性。此外,针对细丝蛋白 A(FLNA)上的 Q/R 位点的 A-to-I RNA 编辑设计的核酶对从细胞中提取的生理编辑的 FLNA mRNA 表现出编辑特异性切割活性。我们证明了我们的策略能够有效地以编辑依赖的方式切割靶 RNA。本研究的数据为体内特定靶 RNA 的 RNA 编辑依赖性降解提供了实验基础。