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Nucleoside Analogs in ADAR Guide Strands Enable Editing at 5′-GA Sites

机译:ADAR 向导链中的核苷类似物可在 5′-GA 位点进行编辑

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摘要

Adenosine Deaminases Acting on RNA (ADARs) are members of a family of RNA editing enzymes that catalyze the conversion of adenosine into inosine in double-stranded RNA (dsRNA). ADARs’ selective activity on dsRNA presents the ability to correct mutations at the transcriptome level using guiding oligonucleotides. However, this approach is limited by ADARs’ preference for specific sequence contexts to achieve efficient editing. Substrates with a guanosine adjacent to the target adenosine in the 5′ direction (5′-GA) are edited less efficiently compared to substrates with any other canonical nucleotides at this position. Previous studies showed that a G/purine mismatch at this position results in more efficient editing than a canonical G/C pair. Herein, we investigate a series of modified oligonucleotides containing purine or size-expanded nucleoside analogs on guide strands opposite the 5′-G (−1 position). The results demonstrate that modified adenosine and inosine analogs enhance editing at 5′-GA sites. Additionally, the inclusion of a size-expanded cytidine analog at this position improves editing over a control guide bearing cytidine. High-resolution crystal structures of ADAR:/RNA substrate complexes reveal the manner by which both inosine and size-expanded cytidine are capable of activating editing at 5′-GA sites. Further modification of these altered guide sequences for metabolic stability in human cells demonstrates that the incorporation of specific purine analogs at the −1 position significantly improves editing at 5′-GA sites.
机译:作用于 RNA 的腺苷脱氨酶 (ADAR) 是 RNA 编辑酶家族的成员,可催化双链 RNA (dsRNA) 中腺苷转化为肌苷。ADAR 对 dsRNA 的选择性活性表现出使用引导寡核苷酸在转录组水平纠正突变的能力。但是,这种方法受到 ADAR 对特定序列上下文的偏好的限制,以实现高效的编辑。与在该位置具有任何其他经典核苷酸的底物相比,在 5' 方向 (5'-GA) 上鸟苷与靶腺苷相邻的底物的编辑效率较低。先前的研究表明,该位置的 G/嘌呤不匹配比规范的 G/C 对更有效的编辑。在此,我们研究了一系列修饰的寡核苷酸,这些寡核苷酸在与 5′-G (-1 位置) 相对的引导链上含有嘌呤或尺寸扩增的核苷类似物。结果表明,修饰的腺苷和肌苷类似物可增强 5′-GA 位点的编辑。此外,在该位置包含大小扩增的胞苷类似物改善了对携带胞苷的对照指南的编辑。ADAR:/RNA 底物复合物的高分辨率晶体结构揭示了肌苷和大小扩增胞苷能够在 5′-GA 位点激活编辑的方式。这些改变的引导序列对人类细胞代谢稳定性的进一步修饰表明,在 -1 位点掺入特异性嘌呤类似物可显著改善 5′-GA 位点的编辑。

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