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扩展的 RNA 碱基编辑器库,用于全面的 RBP-RNA 互作组学研究。

Expanded palette of RNA base editors for comprehensive RBP-RNA interactome studies.

机构信息

Department of Cellular and Molecular Medicine, University of California San Diego, La Jolla, CA, USA.

Stem Cell Program, University of California San Diego, La Jolla, CA, USA.

出版信息

Nat Commun. 2024 Jan 29;15(1):875. doi: 10.1038/s41467-024-45009-4.

Abstract

RNA binding proteins (RBPs) are key regulators of RNA processing and cellular function. Technologies to discover RNA targets of RBPs such as TRIBE (targets of RNA binding proteins identified by editing) and STAMP (surveying targets by APOBEC1 mediated profiling) utilize fusions of RNA base-editors (rBEs) to RBPs to circumvent the limitations of immunoprecipitation (CLIP)-based methods that require enzymatic digestion and large amounts of input material. To broaden the repertoire of rBEs suitable for editing-based RBP-RNA interaction studies, we have devised experimental and computational assays in a framework called PRINTER (protein-RNA interaction-based triaging of enzymes that edit RNA) to assess over thirty A-to-I and C-to-U rBEs, allowing us to identify rBEs that expand the characterization of binding patterns for both sequence-specific and broad-binding RBPs. We also propose specific rBEs suitable for dual-RBP applications. We show that the choice between single or multiple rBEs to fuse with a given RBP or pair of RBPs hinges on the editing biases of the rBEs and the binding preferences of the RBPs themselves. We believe our study streamlines and enhances the selection of rBEs for the next generation of RBP-RNA target discovery.

摘要

RNA 结合蛋白(RBPs)是 RNA 处理和细胞功能的关键调节剂。用于发现 RBPs 的 RNA 靶标的技术,如 TRIBE(RNA 结合蛋白的靶标通过编辑识别)和 STAMP(通过 APOBEC1 介导的分析来调查靶标),利用 RNA 碱基编辑器(rBE)与 RBPs 的融合来规避基于免疫沉淀(CLIP)的方法的局限性,这些方法需要酶消化和大量的输入材料。为了扩大适用于基于编辑的 RBP-RNA 相互作用研究的 rBE 组合,我们在称为 PRINTER(基于蛋白质-RNA 相互作用的 RNA 编辑酶分类的框架)中设计了实验和计算测定,以评估三十多种 A-to-I 和 C-to-U rBE,使我们能够识别出扩展了序列特异性和广泛结合 RBPs 的结合模式特征的 rBE。我们还提出了适用于双 RBP 应用的特定 rBE。我们表明,在给定的 RBP 或 RBP 对中融合单个或多个 rBE 的选择取决于 rBE 的编辑偏向性和 RBPs 本身的结合偏好。我们相信我们的研究简化并增强了下一代 RBP-RNA 靶标发现中 rBE 的选择。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c455/10825223/0155e8b68a5f/41467_2024_45009_Fig1_HTML.jpg

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