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Empty Pericarp21 encodes a novel PPR-DYW protein that is required for mitochondrial RNA editing at multiple sites complexes I and V biogenesis and seed development in maize

机译:空果皮21编码一种新颖的PPR-DYW蛋白该蛋白是线粒体RNA在多个位点编辑复合体I和V的生物发生以及玉米种子发育所必需的

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摘要

C-to-U editing is an important event in post-transcriptional RNA processing, which converts a specific cytidine (C)-to-uridine (U) in transcripts of mitochondria and plastids. Typically, the pentatricopeptide repeat (PPR) protein, which specifies the target C residue by binding to its upstream sequence, is involved in the editing of one or a few sites. Here we report a novel PPR-DYW protein EMP21 that is associated with editing of 81 sites in maize. EMP21 is localized in mitochondria and loss of the EMP21 function severely inhibits the embryogenesis and endosperm development in maize. From a scan of 35 mitochondrial transcripts produced by the Emp21 loss-of-function mutant, the C-to-U editing was found to be abolished at five sites (nad7-77, atp1-1292, atp8-437, nad3-275 and rps4-870), while reduced at 76 sites in 21 transcripts. In most cases, the failure to editing resulted in the translation of an incorrect residue. In consequence, the mutant became deficient with respect to the assembly and activity of mitochondrial complexes I and V. As six of the decreased editing sites in emp21 overlap with the affected editing sites in emp5-1, and the editing efficiency at rpl16-458 showed a substantial reduction in the emp21-1 emp5-4 double mutant compared with the emp21-1 and emp5-4 single mutants, we explored their interaction. A yeast two hybrid assay suggested that EMP21 does not interact with EMP5, but both EMP21 and EMP5 interact with ZmMORF8. Together, these results indicate that EMP21 is a novel PPR-DYW protein required for the editing of ~17% of mitochondrial target Cs, and the editing process may involve an interaction between EMP21 and ZmMORF8 (and probably other proteins).
机译:从C到U的编辑是转录后RNA加工中的重要事件,RNA加工可在线粒体和质体的转录物中将特定的胞苷(C)转化为尿苷(U)。通常,通过结合其上游序列指定目标C残基的五肽重复序列(PPR)蛋白参与一个或几个位点的编辑。在这里,我们报告了一种新颖的PPR-DYW蛋白EMP21,它与玉米中81个位点的编辑有关。 EMP21位于线粒体中,EMP21功能的丧失严重抑制了玉米的胚发生和胚乳发育。通过对Emp21功能丧失突变体产生的35个线粒体转录本的扫描,发现在五个位点(nad7-77,atp1-1292,atp8-437,nad3-275和rps4-870),而在21个转录本中有76个位点减少。在大多数情况下,编辑失败导致翻译不正确的残基。结果,该突变体就线粒体复合体I和V的组装和活性而言变得不足。由于emp21中减少的六个编辑位点与emp5-1中受影响的编辑位点重叠,因此rpl16-458的编辑效率显示与emp21-1和emp5-4单突变体相比,emp21-1 emp5-4双突变体显着减少,我们探索了它们的相互作用。酵母两种杂交试验表明EMP21不与EMP5相互作用,但是EMP21和EMP5都与ZmMORF8相互作用。总之,这些结果表明EMP21是一种新的PPR-DYW蛋白,需要编辑约17%的线粒体靶Cs,并且编辑过程可能涉及EMP21与ZmMORF8(可能还有其他蛋白)之间的相互作用。

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