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3′ adenylation determines mRNA abundance and monitors completion of RNA editing in T. brucei mitochondria

机译:3腺苷酸化决定mRNA的丰度并监测布鲁氏杆菌线粒体中RNA编辑的完成

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摘要

Expression of the mitochondrial genome in protozoan parasite Trypanosoma brucei is controlled post-transcriptionally and requires extensive U-insertion/deletion mRNA editing. In mitochondrial extracts, 3′ adenylation reportedly influences degradation kinetics of synthetic edited and pre-edited mRNAs. We have identified and characterized a mitochondrial poly(A) polymerase, termed KPAP1, and determined major polypeptides in the polyadenylation complex. Inhibition of KPAP1 expression abrogates short and long A-tails typically found in mitochondrial mRNAs, and decreases the abundance of never-edited and edited transcripts. Pre-edited mRNAs are not destabilized by the lack of 3′ adenylation, whereas short A-tails are required and sufficient to maintain the steady-state levels of partially edited, fully edited, and never-edited mRNAs. The editing directed by a single guide RNA is sufficient to impose a requirement for the short A-tail in edited molecules. Upon completion of the editing process, the short A-tails are extended as (A/U) heteropolymers into structures previously thought to be long poly(A) tails. These data provide the first direct evidence of functional interactions between 3′ processing and editing of mitochondrial mRNAs in trypanosomes.
机译:线虫基因组在原生动物寄生虫布鲁氏锥虫中的表达在转录后受到控制,需要大量的U插入/缺失mRNA编辑。据报道,在线粒体提取物中,3'腺苷酸化影响合成的和预编辑的mRNA的降解动力学。我们已经鉴定并表征了线粒体聚(A)聚合酶,称为KPAP1,并确定了聚腺苷酸化复合物中的主要多肽。抑制KPAP1表达消除了线粒体mRNA中常见的短和长A型尾巴,并降低了从未编辑和编辑过的转录本的丰度。预编辑的mRNA并不会因缺少3'腺苷酸而不稳定,而需要短的A尾且足以维持部分编辑,完全编辑和从未编辑的mRNA的稳态水平。由单个指导RNA指导的编辑足以对编辑的分子施加短A尾的要求。编辑过程完成后,短的A型尾巴将作为(A / U)杂聚物扩展到以前认为是长的poly(A)尾巴的结构中。这些数据提供了锥虫体内3'加工与线粒体mRNA的编辑之间功能相互作用的第一个直接证据。

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