Improvement of C-to-U RNA editing using an artificial MS2-APOBEC system.

Biotechnol J

Bioscience, Biotechnology and Biomedical Engineering Research Area, Japan Advanced Institute of Science and Technology, Nomi, Ishikawa, Japan.

Published: January 2024

AI Article Synopsis

  • Researchers successfully demonstrated RNA editing by fusing cytidine deaminase enzymes APOBEC3A and APOBEC3G with the MS2 system to achieve C-to-U editing in RNA.
  • They designed unique guide RNAs that shaped a loop in the target RNA, enabling it to become single-stranded, which enhances the editing process by these enzymes.
  • Although a mutation in APOBEC3G improved its efficiency slightly, the main finding shows that the MS2 system can combine different enzymes for better RNA editing possibilities.

Article Abstract

RNA cytidine deamination (C-to-U editing) has been achieved using the MS2-apolipoprotein B-editing catalytic polypeptide-like (APOBEC)1 editing system. Here, we fused the cytidine deaminase (CDA) enzymes APOBEC3A and APOBEC3G with the MS2 system and examined their RNA editing efficiencies in transfected HEK 293T cells. Given the single-stranded RNA preferences of APOBEC3A and APOBEC3G, we designed unconventional guide RNAs that induced a loop at the target sequence, allowing the target to form a single-stranded structure. Because APOBEC3A and APOBEC3G have different base preferences (5'-TC and 5'-CC, respectively), we introduced the D317W mutation into APOBEC3G to convert its base preference to that of APOBEC3A. Upon co-transfection with a guide RNA that induced the formation of a 14 nt loop on the target sequence, MS2-fused APOBEC3A and APOBEC3G showed high editing efficiency. While the D317W mutation of APOBEC3G led to a slight improvement in editing efficiency, the difference was not statistically significant. These findings indicate that APOBEC3A and APOBEC3G can induce C-to-U RNA editing when transfected with a loop guide RNA. Moreover, the editing efficiency of APOBEC3G can be enhanced by site-specific mutation to alter the base preference. Overall, our results demonstrate that the MS2 system can fuse and catalyze reactions with different enzymes, suggesting that it holds an even greater potential for RNA editing than is utilized currently.

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Source
http://dx.doi.org/10.1002/biot.202300321DOI Listing

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