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Off-Target RNA Editing Hotspots Caused by Base Editors

delete2025-12-24
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PRE
AI
M
Michelle Shmuel-Eidelman
R
Roni Cohen-Fultheim
E
Eli Eisenberg *
E
Erez Y. Levanon *
DOI:10.1016/j.ymthe.2025.12.043delete
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Abstract

Abstract

En 中文
Base editors, composed of engineered deaminases fused with Cas proteins and a guide RNA, enable precise, programmable alteration of single nucleotides within the genome and transcriptome. This innovative technology holds promising therapeutic potential for correcting disease-causing point mutations. However, its clinical translation hinges on both high efficacy and accuracy. Non-specific unintended edits by base-editors remain a critical challenge. Efforts to mitigate off-target activity have mostly focused on detecting recurrent RNA deaminations at specific sites. Complementarily, our methodology quantifies the total burden of RNA alterations, which is particularly effective for capturing stochastic off-target edits that evade conventional detection. Here, we applied the RNA editing index algorithm to quantify off-target levels across individual genes and identified 2,844 adenine base editors and 1,253 cytosine base editors hotspot genes susceptible to aberrant editing. Exon-level analysis revealed localized regions within genes that are particularly prone to off-target editing, including regions where edits introduce premature stop codons – a critical risk for therapeutic applications. By uncovering these previously unrecognized off-target landscapes, our study deepens our understanding of base editor specificity and provides a framework for optimizing their precision, accelerating the development of safer next-generation editing tools.

Journal

Molecular Therapy cover
Molecular Therapy
IF:
12
Papers:
9.9K
Citations:
3.0W

Organization

B
Bar-Ilan University
Scholars:
522
Papers: 255
Citations: 1.1W
T
Tel Aviv University
Scholars:
3.7W
Papers: 3.0W
Citations: 3.6W