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首页> 外文期刊>The Journal of biological chemistry >A Novel Member of the RNase D Exoribonuclease Family Functions in Mitochondrial Guide RNA Metabolism in Trypanosoma brucei
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A Novel Member of the RNase D Exoribonuclease Family Functions in Mitochondrial Guide RNA Metabolism in Trypanosoma brucei

机译:在锥虫瘤Brucei中的线粒体导向RNA代谢中的RNased Exoribonuclease的新型成员

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RNA turnover and RNA editing are essential for regulation of mitochondrial gene expression in Trypanosoma brucei. RNA turnover is controlled in part by RNA 3′ adenylation and uridylation status, with trans-acting factors also impacting RNA homeostasis. However, little is known about the mitochondrial degradation machinery or its regulation in T. brucei. We have identified a mitochondrial exoribonuclease, TbRND, whose expression is highly up-regulated in the insect proliferative stage of the parasite. TbRND shares sequence similarity with RNase D family enzymes but differs from all reported members of this family in possessing a CCHC zinc finger domain. In vitro, TbRND exhibits 3′ to 5′ exoribonuclease activity, with specificity toward uridine homopolymers, including the 3′ oligo(U) tails of guide RNAs (gRNAs) that provide the sequence information for RNA editing. Several lines of evidence generated from RNAi-mediated knockdown and overexpression cell lines indicate that TbRND functions in gRNA metabolism in vivo. First, TbRND depletion results in gRNA tails extended by 2–3 nucleotides on average. Second, overexpression of wild type but not catalytically inactive TbRND results in a substantial decrease in the total gRNA population and a consequent inhibition of RNA editing. The observed effects on the gRNA population are specific as rRNAs, which are also 3′-uridylated, are unaffected by TbRND depletion or overexpression. Finally, we show that gRNA binding proteins co-purify with TbRND. In summary, TbRND is a novel 3′ to 5′ exoribonuclease that appears to have evolved a function highly specific to the mitochondrion of trypanosomes.
机译:RNA周转和RNA编辑对于调节Trypanosoma Brucei中的线粒体基因表达至关重要。 RNA营业额部分受RNA 3'腺苷酸化和脲基状状态的影响,具有跨动作因子,也影响RNA稳态。然而,关于线粒体降解机械或其在T.Brucei中的调节很少。我们已经鉴定了线粒体外核酸酶TBRND,其表达在寄生虫的昆虫增殖阶段中的高度上调。 TBRND与RNase D家族酶分享序列相似性,但与拥有CCHC锌指域的所有报告的成员不同。在体外,TBRND表现出3'至5'Atoribonuclease的活性,特异性均为尿素均聚物,包括3'寡核苷酸(U)尾部的引导RNA(GRNA),其提供RNA编辑的序列信息。从RNAi介导的敲低和过表达细胞系产生的几种证据表明TBRND在体内GRNA代谢中的功能。首先,TBRND耗竭导致GRNA尾部平均延伸2-3个核苷酸。二,野生型过表达但不催化无活性TBRND导致总GRNA群体的显着降低和随后对RNA编辑的抑制。对GRNA群体的观察到的效果是rRNA的,其也是3'-脲化,不受TBRND耗尽或过表达的影响。最后,我们表明GRNA结合蛋白与TBRND共同纯化。总之,TBRND是一种新的3'至5'以5'放射性核酸酶,其似乎已经进化了高度特异性的锥虫细胞的功能。

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