Department of Microbiology, Immunology and Molecular Genetics, David Geffen School of Medicine, University of California, Los Angeles, CA 90095, USA.
Proc Natl Acad Sci U S A. 2011 Mar 1;108(9):3542-7. doi: 10.1073/pnas.1014152108. Epub 2011 Feb 14.
Uridine insertion/deletion RNA editing in kinetoplastid mitochondria corrects encoded frameshifts in mRNAs. The genetic information for editing resides in small guide RNAs (gRNAs), which form anchor duplexes just downstream of an editing site and mediate editing within a single editing "block." Many mRNAs require multiple gRNAs; the observed overall 3' to 5' polarity of editing is determined by the formation of upstream mRNA anchors by downstream editing. Hel61, a mitochondrial DEAD-box protein, was previously shown to be involved in RNA editing, but the functional role was not clear. Here we report that down-regulation of Hel61 [renamed REH1 (RNA editing helicase 1)] expression in Trypanosoma brucei selectively affects editing mediated by two or more overlapping gRNAs but has no effect on editing within a single block. Down-regulation produces an increased abundance of the gRNA/edited mRNA duplex for the first editing block of the A6 mRNA. Recombinant REH1 has an ATP-dependent double strand RNA unwinding activity in vitro with a model gRNA-mRNA duplex. These data indicate that REH1 is involved in gRNA displacement either directly by unwinding the gRNA/edited mRNA duplex or indirectly, to allow the 5' adjacent upstream gRNA to form an anchor duplex with the edited mRNA to initiate another block of editing. Purified tagged REH1 is associated with the RNA editing core complex by RNA linkers and a colocalization of REH1, REL1, and two kinetoplast ribosomal proteins with the kinetoplast DNA was observed by immunofluorescence, suggesting that editing, transcription, and translation may be functionally linked.
尿苷插入/缺失 RNA 编辑在动基体线粒体中纠正 mRNA 的编码移码。编辑的遗传信息存在于小向导 RNA(gRNA)中,gRNA 在编辑位点的下游形成锚定双链体,并在单个编辑“块”内介导编辑。许多 mRNA 需要多个 gRNA;观察到的整体 3' 到 5' 编辑极性由下游编辑的上游 mRNA 锚的形成决定。先前已经表明线粒体 DEAD 盒蛋白 Hel61 参与 RNA 编辑,但功能作用尚不清楚。在这里,我们报道在 Trypanosoma brucei 中下调 Hel61 [重命名为 REH1(RNA 编辑解旋酶 1)] 表达选择性地影响两个或更多重叠 gRNA 介导的编辑,但对单个块内的编辑没有影响。下调会增加 A6 mRNA 第一个编辑块的 gRNA/编辑 mRNA 双链体的丰度。重组 REH1 在体外具有 ATP 依赖性双链 RNA 解链活性,具有模型 gRNA-mRNA 双链体。这些数据表明,REH1 直接通过解开 gRNA/编辑 mRNA 双链体或间接参与 gRNA 置换,以允许 5' 相邻上游 gRNA 与编辑的 mRNA 形成锚定双链体,从而启动另一个编辑块。通过 RNA 接头将标记的 REH1 与 RNA 编辑核心复合物纯化相关联,并且通过免疫荧光观察到 REH1、REL1 和两个动基体核糖体蛋白与动基体 DNA 的共定位,表明编辑、转录和翻译可能在功能上相关联。