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RNA编辑的底物决定因素以及全轮次尿苷插入位点处的编辑复合体相互作用。

Substrate determinants for RNA editing and editing complex interactions at a site for full-round U insertion.

作者信息

Cifuentes-Rojas Catherine, Pavia Paula, Hernandez Alfredo, Osterwisch Daniel, Puerta Concepcion, Cruz-Reyes Jorge

机构信息

Department of Biochemistry and Biophysics, Texas A&M University, College Station, Texas 77843 and.

Laboratorio of Parasitologia Molecular, Pontificia Universidad Javeriana, Carrera 7a No. 43-82, Ed. 50, Lab 113, Bogota´, Colombia.

出版信息

J Biol Chem. 2007 Feb 16;282(7):4265-4276. doi: 10.1074/jbc.M605554200. Epub 2006 Dec 7.

Abstract

Multisubunit RNA editing complexes catalyze uridylate insertion/deletion RNA editing directed by complementary guide RNAs (gRNAs). Editing in trypanosome mitochondria is transcript-specific and developmentally controlled, but the molecular mechanisms of substrate specificity remain unknown. Here we used a minimal A6 pre-mRNA/gRNA substrate to define functional determinants for full-round insertion and editing complex interactions at the editing site 2 (ES2). Editing begins with pre-mRNA cleavage within an internal loop flanked by upstream and downstream duplexes with gRNA. We found that substrate recognition around the internal loop is sequence-independent and that completely artificial duplexes spanning a single helical turn are functional. Furthermore, after our report of cross-linking interactions at the deletion ES1 (35), we show for the first time editing complex contacts at an insertion ES. Our studies using site-specific ribose 2' substitutions defined 2'-hydroxyls within the (a) gRNA loop region and (b) flanking helixes that markedly stimulate both pre-mRNA cleavage and editing complex interactions at ES2. Modification of the downstream helix affected scissile bond specificity. Notably, a single 2'-hydroxyl at ES2 is essential for cleavage but dispensable for editing complex cross-linking. This study provides new insights on substrate recognition during full-round editing, including the relevance of secondary structure and the first functional association of specific (pre-mRNA and gRNA) riboses with both endonuclease cleavage and cross-linking activities of editing complexes at an ES. Importantly, most observed cross-linking interactions are both conserved and relatively stable at ES2 and ES1 in hybrid substrates. However, they were also detected as transient low-stability contacts in a non-edited transcript.

摘要

多亚基RNA编辑复合物催化由互补引导RNA(gRNA)指导的尿苷酸插入/缺失RNA编辑。锥虫线粒体中的编辑是转录本特异性的且受发育调控,但底物特异性的分子机制仍不清楚。在这里,我们使用了最小的A6前体mRNA/gRNA底物来确定在编辑位点2(ES2)进行完整轮次插入和编辑复合物相互作用的功能决定因素。编辑始于前体mRNA在一个内部环内的切割,该内部环两侧是与gRNA的上游和下游双链体。我们发现内部环周围的底物识别与序列无关,并且跨越单个螺旋圈的完全人工双链体具有功能。此外,在我们报道了缺失ES1处的交联相互作用(35)之后,我们首次展示了插入ES处的编辑复合物接触。我们使用位点特异性核糖2'取代的研究确定了(a)gRNA环区域和(b)侧翼螺旋内的2'-羟基,这些2'-羟基显著刺激了ES2处的前体mRNA切割和编辑复合物相互作用。下游螺旋的修饰影响了切割键的特异性。值得注意的是,ES2处的单个2'-羟基对于切割是必不可少的,但对于编辑复合物交联是可有可无的。这项研究为完整轮次编辑过程中的底物识别提供了新的见解,包括二级结构的相关性以及特定(前体mRNA和gRNA)核糖与编辑复合物在一个ES处的内切核酸酶切割和交联活性的首次功能关联。重要的是,在杂交底物中,大多数观察到的交联相互作用在ES2和ES1处都是保守的且相对稳定的。然而,它们也被检测为未编辑转录本中的瞬时低稳定性接触。

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