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Organelle RNA recognition motif-containing (ORRM) proteins are plastid and mitochondrial editing factors in Arabidopsis

机译:包含细胞器RNA识别基序(ORRM)的蛋白质是拟南芥中的质体和线粒体编辑因子

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摘要

Post-transcriptional C-to-U RNA editing occurs at specific sites in plastid and plant mitochondrial transcripts. Members of the Arabidopsis pentatricopeptide repeat (PPR) motif-containing protein family and RNA-editing factor Interacting Protein (RIP, also known as MORF) family have been characterized as essential components of the RNA editing apparatus. Recent studies reveal that several organelle-targeted RNA recognition motif (RRM)-containing proteins are involved in either plastid or mitochondrial RNA editing. ORRM1 (Organelle RRM protein 1) is essential for plastid editing, whereas ORRM2, ORRM3 and ORRM4 are involved in mitochondrial RNA editing. The RRM domain of ORRM1, ORRM3 and ORRM4 is required for editing activity, whereas the auxiliary RIP and Glycine-Rich (GR) domains mediate the ORRM proteins' interactions with other editing factors. The identification of the ORRM proteins as RNA editing factors further expands our knowledge of the composition of the editosome.
机译:转录后C到U RNA编辑发生在质体和植物线粒体转录物中的特定位点。包含拟南芥五肽重复序列(PPR)基序的蛋白家族和RNA编辑因子相互作用蛋白(RIP,也称为MORF)家族的成员已被表征为RNA编辑设备的基本组成部分。最近的研究表明,一些含有细胞器靶向RNA识别基序(RRM)的蛋白质参与质体或线粒体RNA编辑。 ORRM1(Organelle RRM蛋白1)对于质体编辑至关重要,而ORRM2,ORRM3和ORRM4参与线粒体RNA编辑。 ORRM1,ORRM3和ORRM4的RRM结构域是编辑活动所必需的,而辅助RIP和Glycine-Rich(GR)结构域介导ORRM蛋白与其他编辑因子的相互作用。 ORRM蛋白作为RNA编辑因子的鉴定进一步扩展了我们对编辑体组成的认识。

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