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The essential functions of KREPB4 are developmentally distinct and required for endonuclease association with editosomes

机译:KREPB4的基本功能在发育上是不同的是核酸内切酶与编辑体结合所必需的

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摘要

Uridine insertion and deletion RNA editing generates functional mitochondrial mRNAs in Trypanosoma brucei, and several transcripts are differentially edited in bloodstream (BF) and procyclic form (PF) cells correlating with changes in mitochondrial function. Editing is catalyzed by three ∼20S editosomes that have a common set of 12 proteins, but are typified by mutually exclusive RNase III KREN1, N2, and N3 endonucleases with distinct cleavage specificities. KREPB4 is a common editosome protein that has a degenerate RNase III domain lacking conserved catalytic residues, in addition to zinc-finger and Pumilio/fem-3 mRNA binding factor (PUF) motifs. Here we show that KREPB4 is essential for BF and PF growth, in vivo RNA editing, and editosome integrity, but that loss of KREPB4 has differential effects on editosome components and complexes between BF and PF cells. We used targeted mutagenesis to investigate the functions of the conserved PUF and RNase III domains in both life-cycle stages and show that the PUF motif is not essential for function in BF or PF. In contrast, specific mutations in the RNase III domain severely inhibit BF and PF growth and editing, and disrupt ∼20S editosomes, while others indicate that the RNase III domain is noncatalytic. We further show that KREPB4, specifically the noncatalytic RNase III domain, is required for the association of KREN1, N2, and N3 with PF editosomes. These results, combined with previous studies, support a model in which KREPB4 acts as a pseudoenzyme to form the noncatalytic half of an RNase III heterodimer with the editing endonucleases.
机译:尿苷插入和缺失RNA编辑可在布鲁氏锥虫中产生功能性线粒体mRNA,并且在与线粒体功能变化相关的血流(BF)和前环形式(PF)细胞中差异编辑了一些转录物。具有20个共同蛋白质组的3个20S编辑体催化编辑,但以互斥的具有独特切割特异性的RNase III KREN1,N2和N3内切核酸酶为代表。 KREPB4是一种常见的编辑体蛋白,除了锌指和Pumilio / fem-3 mRNA结合因子(PUF)模体外,还具有简并的RNase III结构域,该结构缺少保守的催化残基。在这里,我们显示KREPB4对于BF和PF的生长,体内RNA编辑和编辑体完整性是必不可少的,但是KREPB4的丢失对BF和PF细胞之间的编辑体成分和复合物具有不同的影响。我们使用靶向诱变来研究两个生命周期阶段中保守的PUF和RNase III结构域的功能,并显示PUF基序对于BF或PF并不是必需的。相比之下,RNase III结构域中的特定突变会严重抑制BF和PF的生长和编辑,并破坏20S编辑体,而其他突变则表明RNase III结构域是非催化性的。我们进一步表明,KREPB4,特别是非催化性RNase III域,对于KREN1,N2和N3与PF编辑体的结合是必需的。这些结果与先前的研究相结合,支持了一种模型,其中KREPB4充当假酶,以形成具有编辑性核酸内切酶的RNase III异二聚体的非催化部分。

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