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Broadening prime editing toolkits using RNA-Pol-II-driven engineered pegRNA.


ABSTRACT: The prime editor is a versatile tool for targeted precise editing to generate point mutations, small insertions, or small deletions in eukaryotes. However, canonical PE3 system is less efficient, notably in primary cells or pluripotent stem cells. Here, we employed RNA polymerase II promoter instead of RNA polymerase III promoter, whose application is limited by specific DNA contexts, to produce Csy4-processed intronic prime editing guide RNAs (pegRNAs) and, together with other optimizations, achieved efficient targeting with poly(T)-containing pegRNAs, as well as combinatorial and conditional genetic editing. We also found simultaneous suppression of both DNA mismatch repair and DNA damage response could achieve efficient and accurate editing in human embryonic stem cells. These findings relieve the restrictions of RNA polymerase III (RNA-Pol-III)-based base editors and broadened the applications of prime editing.

SUBMITTER: Huang S 

PROVIDER: S-EPMC9481984 | biostudies-literature | 2022 Sep

REPOSITORIES: biostudies-literature

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Broadening prime editing toolkits using RNA-Pol-II-driven engineered pegRNA.

Huang Shisheng S   Zhang Zhenwu Z   Tao Wanyu W   Liu Yao Y   Li Xiangyang X   Wang Xiaolong X   Harati Javad J   Wang Peng-Yuan PY   Huang Xingxu X   Lin Chao-Po CP  

Molecular therapy : the journal of the American Society of Gene Therapy 20220706 9


The prime editor is a versatile tool for targeted precise editing to generate point mutations, small insertions, or small deletions in eukaryotes. However, canonical PE3 system is less efficient, notably in primary cells or pluripotent stem cells. Here, we employed RNA polymerase II promoter instead of RNA polymerase III promoter, whose application is limited by specific DNA contexts, to produce Csy4-processed intronic prime editing guide RNAs (pegRNAs) and, together with other optimizations, ac  ...[more]

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