Engineered CRISPR-Cas9 for <i>Streptomyces</i> sp. genome editing to improve specialized metabolite production

  • Kim, Duck Gyun; 
  • Gu, Boncheol; 
  • Cha, Yujin; 
  • Ha, Jeonghan; 
  • Lee, Yongjae; 
  • ... Oh, Min-Kyu; 
  • 외 2명
Citations

WEB OF SCIENCE

33
Citations

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38

초록

The CRISPR-Cas9 system has frequently been used for genome editing in Streptomyces; however, cytotoxicity, caused by off-target cleavage, limits its application. In this study, we implement innovative modification to Cas9, strategically addressing challenges encountered during gene manipulation using Cas9 within strains possessing high GC content genome. The Cas9-BD, a modified Cas9 with the addition of polyaspartate to its N- and C-termini, is developed with decreased off-target binding and cytotoxicity compared with wild-type Cas9. Cas9-BD and similarly modified dCas9-BD have been successfully employed for simultaneous biosynthetic gene cluster (BGC) refactoring, multiple BGC deletions, or multiplexed gene expression modulations in Streptomyces. We also demonstrate improved secondary metabolite production using multiplexed genome editing with multiple single guide RNA libraries in several Streptomyces strains. Cas9-BD is also used to capture large BGCs using a developed in vivo cloning method. The modified CRISPR-Cas9 system is successfully applied to many Streptomyces sp., providing versatile and efficient genome editing tools for strain engineering of actinomycetes with high GC content genome.

키워드

Aldehyde Dehydrogenase; Polyaspartic Acid; Crispr Associated Endonuclease Cas9; Esterase; Crispr-associated Protein 9; Rna, Guide, Crispr-cas Systems; Aldehyde Dehydrogenase; Guide Rna; Polyaspartic Acid; Crispr Associated Endonuclease Cas9; Crispr-cas System Guide Rna; Bacterium; Enzyme Activity; Gene Expression; Genome; Rna; Secondary Metabolite; Actinobacteria; Article; Carboxy Terminal Sequence; Crispr-cas9 System; Cytotoxicity; Dna Base Composition; Gene Editing; Nonhuman; Promoter Region; Reporter Gene; Streptomyces; Streptomyces Coelicolor; Wild Type; Bacterial Genome; Crispr Cas System; Genetics; Metabolic Engineering; Metabolism; Multigene Family; Procedures; Secondary Metabolism; Crispr-associated Protein 9; Crispr-cas Systems; Gene Editing; Genome, Bacterial; Metabolic Engineering; Multigene Family; Rna, Guide, Crispr-cas Systems; Secondary Metabolism; CAS9; COA; RNA; BIOSYNTHESIS; COELICOLOR; PROMOTER
제목
Engineered CRISPR-Cas9 for <i>Streptomyces</i> sp. genome editing to improve specialized metabolite production
저자
Kim, Duck Gyun; Gu, Boncheol; Cha, Yujin; Ha, Jeonghan; Lee, Yongjae; Kim, Gahyeon; Cho, Byung-Kwan; Oh, Min-Kyu
DOI
10.1038/s41467-025-56278-y
발행일
2025-01-21
유형
Article
저널명
Nature Communications
권
16
호
1