Guo Xuemin, Ernst Nancy Lewis, Stuart Kenneth D
Seattle Biomedical Research Institute, 307 Westlake Avenue North, Suite 500, Seattle, WA 98109, USA.
Mol Cell Biol. 2008 Nov;28(22):6939-53. doi: 10.1128/MCB.01115-08. Epub 2008 Sep 15.
Three types of editosomes, each with an identical core containing six related KREPA proteins, catalyze the U insertion and deletion RNA editing of mitochondrial mRNAs in trypanosomes. Repression of expression of one of these, KREPA3 (also known as TbMP42), shows that it is essential for growth and in vivo editing in both procyclic (PF) and bloodstream (BF) life cycle stages of Trypanosoma brucei. RNA interference knockdown results in editosome disruption and altered in vitro editing in PFs, while repression by regulatable double knockout results in almost complete loss of editosomes in BFs. Mutational analysis shows that the KREPA3 zinc fingers and OB-fold domain are each essential for growth and in vivo editing. Nevertheless, KREPA3 with mutated zinc fingers incorporates into editosomes that catalyze in vitro editing and thus is not essential for editosome integrity, although stability is affected. In contrast, the OB-fold domain is essential for editosome integrity. Overall, KREPA3, especially its OB-fold, functions in editosome integrity, and its zinc fingers are essential for editing in vivo but not for the central catalytic steps. KREPA3 may function in editosome organization and/or RNA positioning.
三种类型的编辑体,每种都有一个相同的核心,包含六种相关的KREPA蛋白,催化锥虫线粒体mRNA的U插入和缺失RNA编辑。其中一种KREPA3(也称为TbMP42)表达的抑制表明,它对于布氏锥虫的前循环(PF)和血流(BF)生命周期阶段的生长和体内编辑至关重要。RNA干扰敲低导致编辑体破坏和PFs中体外编辑改变,而可调节双敲除的抑制导致BFs中编辑体几乎完全丧失。突变分析表明,KREPA3锌指和OB折叠结构域对于生长和体内编辑均必不可少。然而,具有突变锌指的KREPA3可整合到催化体外编辑的编辑体中,因此对于编辑体完整性不是必需的,尽管稳定性受到影响。相比之下,OB折叠结构域对于编辑体完整性至关重要。总体而言,KREPA3,尤其是其OB折叠,在编辑体完整性中起作用,其锌指对于体内编辑至关重要,但对于中心催化步骤并非必需。KREPA3可能在编辑体组织和/或RNA定位中起作用。