4.7 Article

Engineering of near-PAMless adenine base editor with enhanced editing activity and reduced off-target

期刊

MOLECULAR THERAPY-NUCLEIC ACIDS
卷 28, 期 -, 页码 732-742

出版社

CELL PRESS
DOI: 10.1016/j.omtn.2022.04.032

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资金

  1. National Key Research and Development Program of China [2016YFC1000307]
  2. Leading Talents of Guangdong Province Program [608285568031]

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This study developed a new adenine base editor, CE-8e-SpRY, which shows improved editing efficiency and reduced off-target effects, broadening the applicability of correcting or introducing pathogenic point mutations.
About 47% of pathogenic point mutations could be corrected by ABE-induced A.T-to-G.C conversions. However, the applications of ABEs are still hindered by undesired editing efficiency, limited editing scopes, and off-targeting effects. Here, we develop a new adenine base editor, by embedding TadA-8e monomer into SpRY-nCas9, named as CE-8e-SpRY, which exhibits higher activity at NRN than NYN PAMs favored by SpRY nuclease. CE-8e-SpRY could target nearly all genomic sites in principle and induces the highest targeting efficiency among tested SpRY-based ABEs. In addition, CE-8e-SpRY also shows reduced RNA and DNA off-targeting activities. With optimized sgRNAs, CE-8e-SpRY induces efficient or desired target editing at some disease-relevant loci where conventional ABEs were unable to induce precise and satisfied editing. Taken together, our CE-8e-SpRY could broaden the applicability of ABEs in correcting or introducing pathogenic point mutations.

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