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Two RNA recognition motif-containing proteins are plant mitochondrial editing factors

机译:两种包含RNA识别基序的蛋白质是植物线粒体编辑因子

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Post-transcriptional C-to-U RNA editing occurs in plant plastid and mitochondrial transcripts. Members of the Arabidopsis RNA-editing factor interacting protein (RIP) family and ORRM1 (Organelle RNA Recognition Motif-containing protein 1) have been recently characterized as essential components of the chloroplast RNA editing apparatus. ORRM1 belongs to a distinct clade of RNA Recognition Motif (RRM)-containing proteins, most of which are predicted to be organelle-targeted. Here we report the identification of two proteins, ORRM2(organelle RRM protein 2) and ORRM3 (organelle RRM protein 3), as the first members of the ORRM clade to be identified as mitochondrial editing factors. Transient silencing of ORRM2 and ORRM3 resulted in reduced editing efficiency at similar to 6% of the mitochondrial C targets. In addition to an RRM domain at the N terminus, ORRM3 carries a glycine-rich domain at the C terminus. The N-terminal RRM domain by itself provides the editing activity of ORRM3. In yeast-two hybrid assays, ORRM3 interacts with RIP1, ORRM2 and with itself. Transient silencing of ORRM2 in the orrm3 mutant further impairs the editing activity at sites controlled by both ORRM2 and ORRM3. Identification of the effect of ORRM2 and ORRM3 on RNA editing reveals a previously undescribed role of RRM-containing proteins as mitochondrial RNA editing factors.
机译:转录后C到U RNA编辑发生在植物质体和线粒体转录物中。拟南芥RNA编辑因子相互作用蛋白(RIP)家族和ORRM1(含器官RNA识别基序的蛋白1)的成员最近被表征为叶绿体RNA编辑设备的基本组成部分。 ORRM1属于包含RNA识别基序(RRM)的蛋白质的独特分支,其中大多数被预测为靶向细胞器。在这里,我们报告鉴定两种蛋白质,ORRM2(细胞器RRM蛋白2)和ORRM3(细胞器RRM蛋白3),作为ORRM进化枝的第一个成员,被鉴定为线粒体编辑因子。 ORRM2和ORRM3的瞬时沉默导致编辑效率降低,接近线粒体C目标的6%。除了在N端的RRM结构域外,ORRM3在C端还带有富含甘氨酸的结构域。 N端RRM域本身提供了ORRM3的编辑活动。在两种酵母的杂交试验中,ORRM3与RIP1,ORRM2及其自身相互作用。 orrm3突变体中ORRM2的瞬时沉默进一步削弱了由ORRM2和ORRM3共同控制的位点的编辑活性。鉴定ORRM2和ORRM3对RNA编辑的作用揭示了以前未描述的含RRM的蛋白质作为线粒体RNA编辑因子的作用。

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