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April 3, 2019Biochemistry29 citations

RNA-Guided Adenosine Deaminases: Advances and Challenges for Therapeutic RNA Editing

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GCGenghao ChenDKDhruva KatrekarPMPrashant Mali

Key Result

A-to-I RNA base editing offers a programmable, tunable, and reversible strategy for cellular engineering and an attractive therapeutic alternative for correcting point mutations.

Structured PICO

I
Intervention
RNA-guided adenosine deaminases (A-to-I RNA base editing)

This perspective provides a guide on five characterized A-to-I RNA base editing systems for potential therapeutic applications, such as the correction of point mutations.

Abstract

Targeted transcriptome engineering, in contrast to genome engineering, offers a complementary and potentially tunable and reversible strategy for cellular engineering. In this regard, adenosine to inosine (A-to-I) RNA base editing was recently engineered to make programmable base conversions on target RNAs. Similar to the DNA base editing technology, A-to-I RNA editing may offer an attractive alternative in a therapeutic setting, especially for the correction of point mutations. This Perspective introduces five currently characterized RNA editing systems and serves as a reader's guide for implementing an appropriate RNA editing strategy for applications in research or therapeutics.

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Cite This Study

Chen et al. (2019) conducted a review in Point mutations. RNA-Guided Adenosine Deaminases (A-to-I RNA editing) was evaluated. A-to-I RNA base editing offers a programmable, tunable, and reversible strategy for cellular engineering and an attractive therapeutic alternative for correcting point mutations.

synapsesocial.com/papers/6a22c7a3b95e3d1e3614ea1dhttps://doi.org/10.1021/acs.biochem.9b00046
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