Engineering TALE-linked deaminases to facilitate precision adenine base editing in mitochondrial DNA

Authors
Cho, Sung-IkLim, KayeongHong, SeonghoLee, JaesukKim, AnnieLim, Chae JinRyou, SeungminLee, Ji MinMok, Young GeunChung, EugeneKim, SanghunHan, SeunghunCho, Sang-MiKim, JieunKim, Eun-KyoungNam, Ki-HoanOh, YejiChoi, MinkyungAn, Tae HyeonOh, Kyoung-JiLee, SeonghyunLee, HyunjiKim, Jin-Soo
Issue Date
2024-01
Publisher
Cell Press
Citation
Cell, v.187, no.1, pp.95 - 109.e26
Abstract
DddA-derived cytosine base editors (DdCBEs) and transcription activator -like effector (TALE) -linked deaminases (TALEDs) catalyze targeted base editing of mitochondrial DNA (mtDNA) in eukaryotic cells, a method useful for modeling of mitochondrial genetic disorders and developing novel therapeutic modalities. Here, we report that A -to -G -editing TALEDs but not C -to -T -editing DdCBEs induce tens of thousands of transcriptome-wide off -target edits in human cells. To avoid these unwanted RNA edits, we engineered the substrate -binding site in TadA8e, the deoxy-adenine deaminase in TALEDs, and created TALED variants with fine-tuned deaminase activity. Our engineered TALED variants not only reduced RNA off -target edits by >99% but also minimized off -target mtDNA mutations and bystander edits at a target site. Unlike wildtype versions, our TALED variants were not cytotoxic and did not cause developmental arrest of mouse embryos. As a result, we obtained mice with pathogenic mtDNA mutations, associated with Leigh syndrome, which showed reduced heart rates.
Keywords
RNA OFF-TARGET; STEM-CELLS; MUTATIONS; EDITORS; NUCLEAR
ISSN
0092-8674
URI
https://pubs.kist.re.kr/handle/201004/148612
DOI
10.1016/j.cell.2023.11.035
Appears in Collections:
KIST Article > 2024
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