Department of Molecular Biology and Genetics, Cornell University, Ithaca, NY 14853, USA.
Proc Natl Acad Sci U S A. 2013 Mar 19;110(12):E1169-78. doi: 10.1073/pnas.1220162110. Epub 2013 Mar 4.
Plant RNA editing modifies cytidines (C) to uridines (U) at specific sites in the transcripts of both mitochondria and plastids. Specific targeting of particular Cs is achieved by pentatricopeptide proteins that recognize cis elements upstream of the C that is edited. Members of the RNA-editing factor interacting protein (RIP) family in Arabidopsis have recently been shown to be essential components of the plant editosome. We have identified a gene that contains a pair of truncated RIP domains (RIP-RIP). Unlike any previously described RIP family member, the encoded protein carries an RNA recognition motif (RRM) at its C terminus and has therefore been named Organelle RRM protein 1 (ORRM1). ORRM1 is an essential plastid editing factor; in Arabidopsis and maize mutants, RNA editing is impaired at particular sites, with an almost complete loss of editing for 12 sites in Arabidopsis and 9 sites in maize. Transfection of Arabidopsis orrm1 mutant protoplasts with constructs encoding a region encompassing the RIP-RIP domain or a region spanning the RRM domain of ORRM1 demonstrated that the RRM domain is sufficient for the editing function of ORRM1 in vitro. According to a yeast two-hybrid assay, ORRM1 interacts selectively with pentatricopeptide transfactors via its RIP-RIP domain. Phylogenetic analysis reveals that the RRM in ORRM1 clusters with a clade of RRM proteins that are targeted to organelles. Taken together, these results suggest that other members of the ORRM family may likewise function in RNA editing.
植物 RNA 编辑将胞嘧啶(C)修饰为线粒体和质体转录本中特定位置的尿嘧啶(U)。特定的 Cs 的特定靶向是通过识别编辑的 C 上游顺式元件的五肽蛋白来实现的。拟南芥中 RNA 编辑因子相互作用蛋白(RIP)家族的成员最近被证明是植物编辑体的必需组成部分。我们已经鉴定出一个包含一对截断 RIP 结构域(RIP-RIP)的基因。与以前描述的任何 RIP 家族成员不同,编码的蛋白质在其 C 末端携带 RNA 识别基序(RRM),因此被命名为细胞器 RRM 蛋白 1(ORRM1)。ORRM1 是一种必需的质体编辑因子;在拟南芥和玉米突变体中,特定位置的 RNA 编辑受损,在拟南芥中有 12 个位点和玉米中有 9 个位点的编辑几乎完全丧失。用包含 RIP-RIP 结构域的构建体或跨越 O R R M1 的 RRM 结构域的构建体转染拟南芥 orrm1 突变体原生质体,证明 RRM 结构域足以在体外发挥 ORRM1 的编辑功能。根据酵母双杂交测定,ORRM1 通过其 RIP-RIP 结构域选择性地与五肽转因子相互作用。系统发育分析表明,ORRM1 中的 RRM 与靶向细胞器的 RRM 蛋白的一个聚类聚集在一起。综上所述,这些结果表明,ORRM 家族的其他成员可能同样在 RNA 编辑中发挥作用。