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通过靶向 RNA 编辑对水稻双链 RNA 结合蛋白 1 相关 RNA 进行全基因组分析。

Genome-wide profiling of rice Double-stranded RNA-Binding Protein 1-associated RNAs by targeted RNA editing.

机构信息

National Key Laboratory of Crop Genetic Improvement, Hubei Hongshan Laboratory, Huazhong Agricultural University, Wuhan 430070, China.

Hubei Key Laboratory of Plant Pathology, Huazhong Agricultural University, Wuhan 430070, China.

出版信息

Plant Physiol. 2023 May 31;192(2):805-820. doi: 10.1093/plphys/kiad158.

Abstract

RNA-binding proteins (RBPs) play essential roles in regulating gene expression. However, the RNA ligands of RBPs are poorly understood in plants, not least due to the lack of efficient tools for genome-wide identification of RBP-bound RNAs. An RBP-fused adenosine deaminase acting on RNA (ADAR) can edit RBP-bound RNAs, which allows efficient identification of RNA ligands of RBPs in vivo. Here, we report the RNA editing activities of the ADAR deaminase domain (ADARdd) in plants. Protoplast experiments indicated that RBP-ADARdd fusions efficiently edited adenosines within 41 nucleotides (nt) of their binding sites. We then engineered ADARdd to profile the RNA ligands of rice (Oryza sativa) Double-stranded RNA-Binding Protein 1 (OsDRB1). Overexpressing the OsDRB1-ADARdd fusion protein in rice introduced thousands of A-to-G and T-to-C RNA‒DNA variants (RDVs). We developed a stringent bioinformatic approach to identify A-to-I RNA edits from RDVs, which removed 99.7% to 100% of background single-nucleotide variants in RNA-seq data. This pipeline identified a total of 1,798 high-confidence RNA editing (HiCE) sites, which marked 799 transcripts as OsDRB1-binding RNAs, from the leaf and root samples of OsDRB1-ADARdd-overexpressing plants. These HiCE sites were predominantly located in repetitive elements, 3'-UTRs, and introns. Small RNA sequencing also identified 191 A-to-I RNA edits in miRNAs and other sRNAs, confirming that OsDRB1 is involved in sRNA biogenesis or function. Our study presents a valuable tool for genome-wide profiling of RNA ligands of RBPs in plants and provides a global view of OsDRB1-binding RNAs.

摘要

RNA 结合蛋白 (RBPs) 在调节基因表达中发挥着重要作用。然而,植物中 RBPs 的 RNA 配体知之甚少,这主要是由于缺乏用于全基因组鉴定 RBP 结合 RNA 的有效工具。具有 RNA 结合活性的腺苷脱氨酶 (ADAR) 可编辑 RBP 结合的 RNA,这使得在体内有效鉴定 RBPs 的 RNA 配体成为可能。在这里,我们报告了植物中 ADAR 脱氨酶结构域 (ADARdd) 的 RNA 编辑活性。原生质体实验表明,RBP-ADARdd 融合蛋白可有效地编辑其结合位点附近 41 个核苷酸 (nt) 内的腺苷。然后,我们设计了 ADARdd 来分析水稻 (Oryza sativa) 双链 RNA 结合蛋白 1 (OsDRB1) 的 RNA 配体。在水稻中过表达 OsDRB1-ADARdd 融合蛋白会引入数千个 A 到 G 和 T 到 C 的 RNA-DNA 变体 (RDV)。我们开发了一种严格的生物信息学方法,从 RDV 中鉴定 A 到 I 的 RNA 编辑,该方法从 RNA-seq 数据中去除了 99.7% 到 100% 的背景单核苷酸变体。该方法总共鉴定了 1,798 个高可信度 RNA 编辑 (HiCE) 位点,这些位点标记了 799 个转录本为 OsDRB1 结合的 RNA,来自 OsDRB1-ADARdd 过表达植物的叶和根样本。这些 HiCE 位点主要位于重复元件、3'-UTR 和内含子中。小 RNA 测序还鉴定了 191 个 miRNA 和其他 sRNA 中的 A 到 I 的 RNA 编辑,证实 OsDRB1 参与 sRNA 的生物发生或功能。我们的研究为植物中 RBPs 的 RNA 配体的全基因组分析提供了一个有价值的工具,并提供了 OsDRB1 结合 RNA 的全局视图。

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