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开发一种用于引导小 RNA 驱动高效靶向 RNA 编辑的选择测定法。

Development of a selection assay for small guide RNAs that drive efficient site-directed RNA editing.

机构信息

Eugene Bell Center for Regenerative Biology and Tissue Engineering, The Marine Biological Laboratory, Woods Hole, MA, USA.

Korro Bio Inc., Cambridge, MA, USA.

出版信息

Nucleic Acids Res. 2023 Apr 24;51(7):e41. doi: 10.1093/nar/gkad098.

Abstract

A major challenge confronting the clinical application of site-directed RNA editing (SDRE) is the design of small guide RNAs (gRNAs) that can drive efficient editing. Although many gRNA designs have effectively recruited endogenous Adenosine Deaminases that Act on RNA (ADARs), most of them exceed the size of currently FDA-approved antisense oligos. We developed an unbiased in vitro selection assay to identify short gRNAs that promote superior RNA editing of a premature termination codon. The selection assay relies on hairpin substrates in which the target sequence is linked to partially randomized gRNAs in the same molecule, so that gRNA sequences that promote editing can be identified by sequencing. These RNA substrates were incubated in vitro with ADAR2 and the edited products were selected using amplification refractory mutation system PCR and used to regenerate the substrates for a new round of selection. After nine repetitions, hairpins which drove superior editing were identified. When gRNAs of these hairpins were delivered in trans, eight of the top ten short gRNAs drove superior editing both in vitro and in cellula. These results show that efficient small gRNAs can be selected using our approach, an important advancement for the clinical application of SDRE.

摘要

靶向 RNA 编辑(SDRE)的临床应用面临的一个主要挑战是设计能够驱动高效编辑的小向导 RNA(gRNA)。尽管许多 gRNA 设计有效地招募了内源性作用于 RNA 的腺苷脱氨酶(ADARs),但它们中的大多数都超过了目前 FDA 批准的反义寡核苷酸的大小。我们开发了一种无偏的体外选择测定法,以鉴定可促进提前终止密码子进行优异 RNA 编辑的短 gRNA。该选择测定法依赖于发夹底物,其中靶序列与同一分子中的部分随机化 gRNA 相连,因此可以通过测序鉴定出促进编辑的 gRNA 序列。将这些 RNA 底物在体外与 ADAR2 一起孵育,然后使用扩增不可逆转突变系统 PCR 选择编辑产物,并将其用于为新一轮选择再生底物。重复九次后,鉴定出了驱动优异编辑的发夹。当这些发夹的 gRNA 被转染时,排名前十的短 gRNA 中有八种在体外和细胞内均能进行优异的编辑。这些结果表明,我们的方法可以选择高效的小 gRNA,这是 SDRE 临床应用的重要进展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e51d/10123091/988b4dea3037/gkad098fig1.jpg

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