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Precise in vivo RNA base editing with a wobble-enhanced circular CLUSTER guide RNA.

Philipp ReautschnigCarolin FruhnerNicolai WahnCharlotte P WiegandSabrina KragnessJohn F YungDaniel Tobias HofackerJenna FiskMichelle EidelmanNils WaffenschmidtMaximilian FeigeLaura S PfeifferAnnika E SchulzYvonne FüllErez Y LevanonGail MandelThorsten Stafforst
Published in: Nature biotechnology (2024)
Recruiting the endogenous editing enzyme adenosine deaminase acting on RNA (ADAR) with tailored guide RNAs for adenosine-to-inosine (A-to-I) RNA base editing is promising for safely manipulating genetic information at the RNA level. However, the precision and efficiency of editing are often compromised by bystander off-target editing. Here, we find that in 5'-UAN triplets, which dominate bystander editing, G•U wobble base pairs effectively mitigate off-target events while maintaining high on-target efficiency. This strategy is universally applicable to existing A-to-I RNA base-editing systems and complements other suppression methods such as G•A mismatches and uridine (U) depletion. Combining wobble base pairing with a circularized format of the CLUSTER approach achieves highly precise and efficient editing (up to 87%) of a disease-relevant mutation in the Mecp2 transcript in cell culture. Virus-mediated delivery of the guide RNA alone realizes functional MeCP2 protein restoration in the central nervous system of a murine Rett syndrome model with editing yields of up to 19% and excellent bystander control in vivo.
Keyphrases
  • crispr cas
  • nucleic acid
  • gene expression
  • healthcare
  • cerebrospinal fluid
  • rna seq
  • smoking cessation
  • single cell
  • amino acid
  • binding protein
  • health information
  • protein protein