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CRISPR/Cas system-guided plasmid mutagenesis without sequence restriction

  • Fengjiao Zhao
  • , Feng Chen
  • , Huahang Yu
  • , Siyue Fan
  • , Min Bai
  • , Jing Xue
  • , Yue Zhao
  • , Xiaolei Zuo
  • , Chunhai Fan
  • , Yongxi Zhao
  • Xi'an Jiaotong University
  • Shanghai Jiao Tong University

Research output: Contribution to journalArticlepeer-review

Abstract

Plasmid mutagenesis is an essential step to engineer protein variants with desired properties. Direct generation of mutations on plasmids is a promising method compared to PCR-based methods and subcloning, yet it suffers from the sequence restriction in the generation of single-stranded circular plasmids. Here we demonstrate the CRISPR/Cas system-guided plasmid mutagenesis, a method using gRNA/Cas9 nickase complex to generate single-stranded circular plasmids as polymerization templates for mutagenesis. This method can directly create user-defined mutation libraries on the plasmid. It offers broad sequence programmability and even covers methylated plasmids. We further combine this method with rational design to engineer genome-editing protein FnCpf1. The FnCpf1 variants with mutations in the PAM-binding groove were generated. Several variants expanded the PAM range and exhibited lower off-target effect, which can loosen PAM constraint and enhance target specificity for genome editing. This work presents an effective tool for plasmid mutagenesis and protein engineering studies.

Original languageEnglish
Pages (from-to)1481-1487
Number of pages7
JournalFundamental Research
Volume5
Issue number4
DOIs
StatePublished - Jul 2025

Keywords

  • CRISPR/Cas system
  • DNA assembly
  • Plasmid mutation
  • Protein engineering
  • Sequence programmability

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