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通过X射线晶体学对人ADAR2-RNA复合物进行结构分析。

Structural analysis of human ADAR2-RNA complexes by X-ray crystallography.

作者信息

Campbell Kristen B, Cheng Jeff, Mendoza Herra G, Karki Agya, Beal Peter A, Fisher Andrew J

机构信息

Department of Chemistry, University of California, Davis, CA, United States.

Department of Chemistry, University of California, Davis, CA, United States.

出版信息

Methods Enzymol. 2025;710:19-53. doi: 10.1016/bs.mie.2024.11.023. Epub 2024 Dec 4.

DOI:10.1016/bs.mie.2024.11.023
PMID:39870445
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11881785/
Abstract

Adenosine deaminases acting on RNAs (ADARs) are a class of RNA editing enzymes found in metazoa that catalyze the hydrolytic deamination of adenosine to inosine in duplexed RNA. Inosine is a nucleotide that can base pair with cytidine, therefore, inosine is interpreted by cellular processes as guanosine. ADARs are functionally important in RNA recoding events, RNA structure modulation, innate immunity, and can be harnessed for therapeutically-driven base editing to treat genetic disorders. Guide RNAs (gRNAs) bearing various modifications can be used to recruit ADARs to edit sites of interest in a process called site-directed RNA editing (SDRE). To help advance the rational design of gRNAs for therapeutics, characterizing the structure-to-activity relationship of ADARs' recognition and binding of substrate duplex RNA at atomic resolution is critical. In this chapter, we describe the process of determining the structure of human ADAR2 bound to duplex RNA using X-ray crystallography. Solid phase synthesis of 8-azanebularine-modified RNAs and purification for binding and crystallographic studies are described. The overexpression and purification of ADARs and assembly of the protein-RNA complex are detailed. Lastly, methods for crystallizing ADAR-RNA complexes and X-ray structure determination and data refinement strategies are outlined.

摘要

作用于RNA的腺苷脱氨酶(ADARs)是后生动物中发现的一类RNA编辑酶,可催化双链RNA中腺苷的水解脱氨生成肌苷。肌苷是一种可与胞苷碱基配对的核苷酸,因此,细胞过程将肌苷解读为鸟苷。ADARs在RNA重编码事件、RNA结构调节、先天免疫中具有重要功能,并且可用于治疗性碱基编辑以治疗遗传疾病。携带各种修饰的引导RNA(gRNA)可用于在一种称为定点RNA编辑(SDRE)的过程中招募ADARs至感兴趣的编辑位点。为了推动用于治疗的gRNA的合理设计,以原子分辨率表征ADARs对底物双链RNA的识别和结合的结构-活性关系至关重要。在本章中,我们描述了使用X射线晶体学确定与双链RNA结合的人ADAR2结构的过程。描述了8-氮杂nebularine修饰的RNA的固相合成以及用于结合和晶体学研究的纯化。详细介绍了ADARs的过表达和纯化以及蛋白质-RNA复合物的组装。最后,概述了ADAR-RNA复合物的结晶方法以及X射线结构测定和数据精修策略。

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Structural analysis of human ADAR2-RNA complexes by X-ray crystallography.通过X射线晶体学对人ADAR2-RNA复合物进行结构分析。
Methods Enzymol. 2025;710:19-53. doi: 10.1016/bs.mie.2024.11.023. Epub 2024 Dec 4.
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Bioessays. 2017 Apr;39(4). doi: 10.1002/bies.201600187. Epub 2017 Feb 20.

本文引用的文献

1
Impact of Disease-Associated Mutations on the Deaminase Activity of ADAR1.疾病相关突变对 ADAR1 脱氨酶活性的影响。
Biochemistry. 2024 Feb 6;63(3):282-293. doi: 10.1021/acs.biochem.3c00405. Epub 2024 Jan 8.
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Selective Inhibition of ADAR1 Using 8-Azanebularine-Modified RNA Duplexes.使用 8-氮杂鸟嘌呤修饰的 RNA 双链体选择性抑制 ADAR1。
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Nucleic Acids Res. 2022 Oct 28;50(19):10857-10868. doi: 10.1093/nar/gkac897.
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Asymmetric dimerization of adenosine deaminase acting on RNA facilitates substrate recognition.腺苷脱氨酶作用于 RNA 的不对称二聚化促进底物识别。
Nucleic Acids Res. 2020 Aug 20;48(14):7958-7972. doi: 10.1093/nar/gkaa532.
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A Bump-Hole Approach for Directed RNA Editing.一种用于定向 RNA 编辑的凹坑法。
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10
Collection of X-Ray Diffraction Data from Macromolecular Crystals.从大分子晶体收集X射线衍射数据。
Methods Mol Biol. 2017;1607:165-184. doi: 10.1007/978-1-4939-7000-1_7.