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首页> 外文期刊>RNA >Novel TUTase associates with an editosome-like complex in mitochondria of Trypanosoma brucei.
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Novel TUTase associates with an editosome-like complex in mitochondria of Trypanosoma brucei.

机译:新型TUTase与布鲁氏锥虫线粒体中的类似编辑体的复合物相关。

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摘要

Expression of mitochondrial genomes in Kinetoplastida protists requires massive uracil insertion/deletion mRNA editing. The cascade of editing reactions is accomplished by a multiprotein complex, the 20S editosome, and is directed by trans-acting guide RNAs. Two distinct RNA terminal uridylyl transferases (TUTases), RNA Editing TUTase 1 (RET1) and RNA Editing TUTase 2 (RET2), catalyze 3' uridylylation of guide RNAs and U-insertions into the mRNAs, respectively. RET1 is also involved in mitochondrial mRNA turnover and participates in numerous heterogeneous complexes; RET2 is an integral part of the 20S editosome, in which it forms a U-insertion subcomplex with zinc finger protein MP81 and RNA editing ligase REL2. Here we report the identification of a third mitochondrial TUTase from Trypanosoma brucei. The mitochondrial editosome-like complex associated TUTase (MEAT1) interacts with a 20S editosome-like particle, effectively substituting the U-insertion subcomplex. MEAT1 and RET2 are mutually exclusive in their respective complexes, which otherwise share several components. Similarly to RET2, MEAT1 is exclusively U-specific in vitro and is active on gapped double-stranded RNA resembling editing substrates. However, MEAT1 does not require a 5' phosphate group on the 3' mRNA cleavage fragment produced by editing endonucleases. The functional RNAi complementation experiments showed that MEAT1 is essential for viability of bloodstream and insect parasite forms. The growth inhibition phenotype in the latter can be rescued by coexpressing an RNAi-resistant gene with double-stranded RNA targeting the endogenous transcript. However, preliminary RNA analysis revealed no gross effects on RNA editing in MEAT1-depleted cells and indicated its possible role in regulating the mitochondrial RNA stability.
机译:线粒体基因组在原生质体中的表达需要大量的尿嘧啶插入/缺失mRNA编辑。编辑反应的级联由多蛋白复合物20S编辑体完成,并由反式引导RNA指导。 RNA编辑TUTase 1(RET1)和RNA编辑TUTase 2(RET2)这两种截然不同的RNA末端尿苷酸转移酶(TUTase),分别催化了指导RNA和U插入mRNA的3'urilylylation。 RET1也参与线粒体mRNA的转换,并参与许多异质复合体。 RET2是20S编辑体的组成部分,在其中它与锌指蛋白MP81和RNA编辑连接酶REL2形成一个U插入亚复合体。在这里,我们报告从布鲁氏锥虫的第三线粒体TUTase的鉴定。线粒体编辑体样复合体相关的TUTase(MEAT1)与20S编辑体体样颗粒相互作用,有效取代了U插入亚复合体。 MEAT1和RET2在它们各自的复合物中互斥,否则它们共享多个组件。与RET2相似,MEAT1在体外完全是U特异的,并且在类似于编辑底物的空位双链RNA上具有活性。但是,MEAT1在编辑核酸内切酶产生的3'mRNA裂解片段上不需要5'磷酸基团。功能性RNAi互补实验表明,MEAT1对血流和昆虫寄生虫形式的生存能力至关重要。后者的生长抑制表型可以通过将RNAi抗性基因与靶向内源转录本的双链RNA共表达来挽救。但是,初步的RNA分析显示,在MEAT1缺失的细胞中,RNA编辑没有明显影响,并表明了其在调节线粒体RNA稳定性中的可能作用。

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