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Sulfonated inhibitors of the RNA editing ligases validate the essential role of the MRP1/2 proteins in kinetoplastid RNA editing

机译:RNA编辑连接酶的磺化抑制剂验证了MRP1 / 2蛋白在动质体RNA编辑中的重要作用

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摘要

The RNA editing core complex (RECC) catalyzes mitochondrial U-insertion/deletion mRNA editing in trypanosomatid flagellates. Some naphthalene-based sulfonated compounds, such as C35 and MrB, competitively inhibit the auto-adenylylation activity of an essential RECC enzyme, kinetoplastid RNA editing ligase 1 (KREL1), required for the final step in editing. Previous studies revealed the ability of these compounds to interfere with the interaction between the editosome and its RNA substrates, consequently affecting all catalytic activities that comprise RNA editing. This observation implicates a critical function for the affected RNA binding proteins in RNA editing. In this study, using the inhibitory compounds, we analyzed the composition and editing activities of functional editosomes and identified the mitochondrial RNA binding proteins 1 and 2 (MRP1/2) as their preferred targets. While the MRP1/2 heterotetramer complex is known to bind guide RNA and promote annealing to its cognate pre-edited mRNA, its role in RNA editing remained enigmatic. We show that the compounds affect the association between the RECC and MRP1/2 heterotetramer. Furthermore, RECC purified post-treatment with these compounds exhibit compromised in vitro RNA editing activity that, remarkably, recovers upon the addition of recombinant MRP1/2 proteins. This work provides experimental evidence that the MRP1/2 heterotetramer is required for in vitro RNA editing activity and substantiates the hypothesized role of these proteins in presenting the RNA duplex to the catalytic complex in the initial steps of RNA editing.
机译:RNA编辑核心复合体(RECC)催化锥虫鞭毛中线粒体U插入/缺失mRNA编辑。一些基于萘的磺化化合物(例如C35和MrB)竞争性地抑制了必需的RECC酶(运动质体RNA编辑连接酶1(KREL1))的自动腺苷酰化活性,这是编辑的最后一步。先前的研究表明,这些化合物具有干扰编辑体及其RNA底物之间相互作用的能力,因此会影响包括RNA编辑在内的所有催化活性。该观察结果暗示了RNA编辑中受影响的RNA结合蛋白的关键功能。在这项研究中,使用抑制性化合物,我们分析了功能性小体的组成和编辑活性,并确定了线粒体RNA结合蛋白1和2(MRP1 / 2)作为它们的首选靶标。虽然已知MRP1 / 2异四聚体复合物结合引导RNA并促进与其同源的预编辑mRNA的退火,但其在RNA编辑中的作用仍然是未知的。我们表明该化合物影响RECC和MRP1 / 2异四聚体之间的关联。此外,用这些化合物进行的RECC纯化后处理显示出受损的体外RNA编辑活性,该活性显着​​地在添加重组MRP1 / 2蛋白后恢复。这项工作提供了实验证据,证明MRP1 / 2异四聚体是体外RNA编辑活性所必需的,并证实了这些蛋白质在RNA编辑的初始步骤中将RNA双链体呈递给催化复合物的假设作用。

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