Seattle Children's Research Institute, Seattle, WA, USA.
Department of Pediatrics, University of Washington School of Medicine, Seattle, WA, USA.
Nucleic Acids Res. 2022 Sep 23;50(17):10123-10139. doi: 10.1093/nar/gkac753.
Each of the three similar RNA Editing Catalytic Complexes (RECCs) that perform gRNA-directed uridine insertion and deletion during Trypanosoma brucei mitochondrial (mt) mRNA editing has a distinct endonuclease activity that requires two related RNase III proteins, with only one competent for catalysis. We identified multiple loss-of-function mutations in the RNase III and other motifs of the non-catalytic KREPB6, KREPB7, and KREPB8 components by random mutagenesis and screening. These mutations had various effects on growth, editing, and both the abundances and RECC associations of these RNase III protein pairs in bloodstream form (BF) and procyclic form (PF) cells. Protein structure modelling predicted that the Zinc Finger (ZnF) of each paired RNase III protein contacts RNA positioned at the heterodimeric active site which is flanked by helices of a novel RNase III-Associated Motif (RAM). The results indicate that the protein domains of the non-catalytic subunits function together in RECC integrity, substrate binding, and editing site recognition during the multistep RNA editing process. Additionally, several mutants display distinct functional consequences in different life cycle stages. These results highlight the complementary roles of protein pairs and three RECCs within the complicated T. brucei mRNA editing machinery that matures mt mRNAs differentially between developmental stages.
每个在布氏锥虫线粒体(mt)mRNA 编辑中执行 gRNA 指导的尿嘧啶插入和缺失的三个相似的 RNA 编辑催化复合物(RECC)都具有独特的内切酶活性,需要两种相关的 RNase III 蛋白,只有一种具有催化能力。我们通过随机诱变和筛选,在 RNase III 和非催化 KREPB6、KREPB7 和 KREPB8 成分的其他基序中鉴定出多个功能丧失突变。这些突变对生长、编辑以及这些 RNase III 蛋白对在血液期(BF)和前鞭毛体期(PF)细胞中的丰度和 RECC 关联有各种影响。蛋白质结构建模预测,每个成对的 RNase III 蛋白的锌指(ZnF)与位于异二聚体活性位点的 RNA 相互作用,该活性位点被一个新的 RNase III 相关基序(RAM)的螺旋所包围。结果表明,非催化亚基的蛋白结构域在多步 RNA 编辑过程中共同作用于 RECC 的完整性、底物结合和编辑位点识别。此外,一些突变体在不同的生命周期阶段表现出不同的功能后果。这些结果突出了在复杂的布氏锥虫 mRNA 编辑机制中,蛋白质对和三个 RECC 在不同发育阶段成熟 mt mRNAs 方面的互补作用。