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Highly efficient DSB-free base editing for streptomycetes with CRISPR-BEST

Proc Natl Acad Sci U S A.. 2019-10; 
Tong Y, Whitford CM, Robertsen HL, Blin K, Jørgensen TS, Klitgaard AK, Gren T, Jiang X, Weber T, Lee SY
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Codon Optimization NM_012907.2), the Cas9n (D10A), and the UGI from Bacillus phage AR9 (genbank accession number: YP_009283008) and the adenosine deaminase ecTadA (genbank accession number: NP_417054.2) were codon optimized to S. coelicolor A3(2) using Genscript’s OptimumGeneTM algorithm (SI Appendix Fig. S4) and then synthesized by Genscript. Get A Quote
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摘要

Streptomycetes serve as major producers of various pharmacologically and industrially important natural products. Although CRISPR-Cas9 systems have been developed for more robust genetic manipulations, concerns of genome instability caused by the DNA double-strand breaks (DSBs) and the toxicity of Cas9 remain. To overcome these limitations, here we report development of the DSB-free, single-nucleotide-resolution genome editing system CRISPR-BEST (CRISPR-Base Editing SysTem), which comprises a cytidine (CRISPR-cBEST) and an adenosine (CRISPR-aBEST) deaminase-based base editor. Specifically targeted by an sgRNA, CRISPR-cBEST can efficiently convert a C:G base pair to a T:A base pair and CRISPR-aBEST can convert a... More

关键词

CRISPR base editor; adenosine deaminase; cytidine deaminase; genome editing; streptomycetes