Alfonzo J D, Thiemann O, Simpson L
Howard Hughes Medical Institute and Department of Molecular, Cell and Developmental Biology, University of California, Los Angeles, CA 90095-1662, USA.
Nucleic Acids Res. 1997 Oct 1;25(19):3751-9. doi: 10.1093/nar/25.19.3751.
Recent advances in in vitrosystems and identification of putative enzymatic activities have led to the acceptance of a modified 'enzyme cascade' model for U insertion/deletion RNA editing in kinetoplastid mitochondria. Models involving the transfer of uridines (Us) from the 3'-end of gRNA to the editing site appear to be untenable. Two types of in vitrosystems have been reported: (i) a gRNA-independent U insertion activity that is dependent on the secondary structure of the mRNA; (ii) a gRNA-dependent U insertion activity that requires addition of a gRNA that can form an anchor duplex with the pre-edited mRNA and which contains guiding A and G nucleotides to base pair with the added Us. In the case of the gRNA-mediated reaction, the precise site of cleavage is at the end of the gRNA-mRNA anchor duplex, as predicted by the original model. The model has been modified to include the addition of multiple Us to the 3'-end of the 5'-cleavage fragment, followed by the formation of base pairs with the guiding nucleotides and trimming back of the single-stranded oligo(U) 3'-overhang. The two fragments, which are held together by the gRNA 'splint', are then ligated. Circumstantial in vitroevidence for involvement of an RNA ligase and an endoribonuclease, which are components of a 20S complex, was obtained. Efforts are underway in several laboratories to isolate and characterize specific components of the editing machinery.
体外系统的最新进展以及假定酶活性的鉴定,使得修正后的“酶级联”模型被用于解释动质体线粒体中尿苷插入/缺失RNA编辑。涉及尿苷(U)从引导RNA(gRNA)3'端转移至编辑位点的模型似乎难以成立。已报道了两种体外系统:(i)一种不依赖gRNA的U插入活性,其依赖于mRNA的二级结构;(ii)一种依赖gRNA的U插入活性,该活性需要添加能与预编辑mRNA形成锚定双链体且含有与添加的U碱基配对的引导性A和G核苷酸的gRNA。在gRNA介导的反应中,切割的精确位点位于gRNA-mRNA锚定双链体的末端,正如原始模型所预测的那样。该模型已被修正,包括在5'切割片段的3'端添加多个U,随后与引导性核苷酸形成碱基对,并修剪单链寡聚(U)3'突出端。然后,由gRNA“夹板”连接在一起的两个片段进行连接。获得了有关RNA连接酶和核糖核酸内切酶参与的间接体外证据,它们是20S复合物的组成部分。几个实验室正在努力分离和表征编辑机制的特定成分。