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首页> 外文期刊>Plant physiology >RNA Recognition Motif-Containing Protein ORRM4 Broadly Affects Mitochondrial RNA Editing and Impacts Plant Development and Flowering
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RNA Recognition Motif-Containing Protein ORRM4 Broadly Affects Mitochondrial RNA Editing and Impacts Plant Development and Flowering

机译:RNA识别母题蛋白ORRM4广泛影响线粒体RNA编辑并影响植物发育和开花。

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摘要

Plant RNA editosomes modify cytidines (C) to uridines (U) at specific sites in plastid and mitochondrial transcripts. Members of the RNA-editing factor interacting protein (RIP) family and Organelle RNA Recognition Motif-containing (ORRM) family are essential components of the Arabidopsis (Arabidopsis thaliana) editosome. ORRM2 and ORRM3 have been recently identified as minor mitochondrial editing factors whose silencing reduces editing efficiency at similar to 6% of the mitochondrial C targets. Here we report the identification of ORRM4 (for organelle RRM protein 4) as a novel, major mitochondrial editing factor that controls similar to 44% of the mitochondrial editing sites. C-to-U conversion is reduced, but not eliminated completely, at the affected sites. The orrm4 mutant exhibits slower growth and delayed flowering time. ORRM4 affects editing in a site-specific way, though orrm4 mutation affects editing of the entire transcript of certain genes. ORRM4 contains an RRM domain at the N terminus and a Gly-rich domain at the C terminus. The RRM domain provides the editing activity of ORRM4, whereas the Gly-rich domain is required for its interaction with ORRM3 and with itself. The presence of ORRM4 in the editosome is further supported by its interaction with RIP1 in a bimolecular fluorescence complementation assay. The identification of ORRM4 as a major mitochondrial editing factor further expands our knowledge of the composition of the RNA editosome and reveals that adequate mitochondrial editing is necessary for normal plant development.
机译:植物RNA编辑体在质体和线粒体转录物中的特定位点将胞苷(C)修饰为尿苷(U)。 RNA编辑因子相互作用蛋白(RIP)家族和含细胞器RNA识别基序(ORRM)家族的成员是拟南芥(Arabidopsis thaliana)编辑体的必要组成部分。最近,ORRM2和ORRM3被认为是较小的线粒体编辑因子,其沉默降低了编辑效率,相当于线粒体C靶标的6%。在这里,我们报告鉴定ORRM4(用于细胞器RRM蛋白4)是一种新颖的主要线粒体编辑因子,其控制着类似44%的线粒体编辑位点。在受影响的站点,C到U的转换减少了,但没有完全消除。 orrm4突变体表现出较慢的生长和延迟的开花时间。尽管orrm4突变会影响某些基因的整个转录本的编辑,但ORRM4会以位点特异性方式影响编辑。 ORRM4在N末端包含一个RRM结构域,在C末端包含一个富含Gly的结构域。 RRM域提供ORRM4的编辑活动,而富含Gly的域是其与ORRM3及其自身交互所必需的。在双分子荧光互补测定中,ORRM4与RIP1的相互作用进一步支持了ORRM4在编囊体中的存在。 ORRM4作为主要的线粒体编辑因子的鉴定进一步扩展了我们对RNA编辑体组成的认识,并揭示了正常植物发育必需的足够的线粒体编辑。

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