A transient in planta editing assay identifies specific binding of the splicing regulator PTB as a prerequisite for cassette exon inclusion.

IF 3.9 2区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Plant Molecular Biology Pub Date : 2024-03-05 DOI:10.1007/s11103-024-01414-3
Jorinde Loeser, Julia Bauer, Kim Janßen, Kevin Rockenbach, Andreas Wachter
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Abstract

The dynamic interaction of RNA-binding proteins (RBPs) with their target RNAs contributes to the diversity of ribonucleoprotein (RNP) complexes that are involved in a myriad of biological processes. Identifying the RNP components at high resolution and defining their interactions are key to understanding their regulation and function. Expressing fusions between an RBP of interest and an RNA editing enzyme can result in nucleobase changes in target RNAs, representing a recent addition to experimental approaches for profiling RBP/RNA interactions. Here, we have used the MS2 protein/RNA interaction to test four RNA editing proteins for their suitability to detect target RNAs of RBPs in planta. We have established a transient test system for fast and simple quantification of editing events and identified the hyperactive version of the catalytic domain of an adenosine deaminase (hADARcd) as the most suitable editing enzyme. Examining fusions between homologs of polypyrimidine tract binding proteins (PTBs) from Arabidopsis thaliana and hADARcd allowed determining target RNAs with high sensitivity and specificity. Moreover, almost complete editing of a splicing intermediate provided insight into the order of splicing reactions and PTB dependency of this particular splicing event. Addition of sequences for nuclear localisation of the fusion protein increased the editing efficiency, highlighting this approach's potential to identify RBP targets in a compartment-specific manner. Our studies have established the editing-based analysis of interactions between RBPs and their RNA targets in a fast and straightforward assay, offering a new system to study the intricate composition and functions of plant RNPs in vivo.

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瞬时植物体内编辑试验确定,剪接调节因子 PTB 的特异性结合是盒式外显子包含的先决条件。
RNA 结合蛋白(RBPs)与其目标 RNA 之间的动态相互作用造就了核糖核蛋白(RNP)复合物的多样性,这些复合物参与了无数生物过程。高分辨率鉴定 RNP 成分并确定其相互作用是了解其调控和功能的关键。表达感兴趣的 RBP 与 RNA 编辑酶之间的融合可导致目标 RNA 中核碱基的变化,这是最近增加的一种分析 RBP/RNA 相互作用的实验方法。在这里,我们利用 MS2 蛋白/RNA 相互作用测试了四种 RNA 编辑蛋白是否适合检测植物体内 RBPs 的靶 RNA。我们建立了一个瞬时测试系统,用于快速、简单地量化编辑事件,并确定腺苷脱氨酶催化结构域的超活性版本(hADARcd)是最适合的编辑酶。通过研究拟南芥多嘧啶束结合蛋白(PTBs)与 hADARcd 的同源物之间的融合,可以高灵敏度和特异性地确定目标 RNA。此外,对剪接中间体的几乎完全编辑使人们得以深入了解剪接反应的顺序以及这一特定剪接事件对 PTB 的依赖性。加入融合蛋白的核定位序列提高了编辑效率,突出了这种方法以特异性方式鉴定 RBP 靶标的潜力。我们的研究建立了基于编辑的 RBPs 与其 RNA 靶标之间相互作用的快速、直接分析方法,为研究体内植物 RNPs 的复杂组成和功能提供了一个新的系统。
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来源期刊
Plant Molecular Biology
Plant Molecular Biology 生物-生化与分子生物学
自引率
2.00%
发文量
95
审稿时长
1.4 months
期刊介绍: Plant Molecular Biology is an international journal dedicated to rapid publication of original research articles in all areas of plant biology.The Editorial Board welcomes full-length manuscripts that address important biological problems of broad interest, including research in comparative genomics, functional genomics, proteomics, bioinformatics, computational biology, biochemical and regulatory networks, and biotechnology. Because space in the journal is limited, however, preference is given to publication of results that provide significant new insights into biological problems and that advance the understanding of structure, function, mechanisms, or regulation. Authors must ensure that results are of high quality and that manuscripts are written for a broad plant science audience.
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