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An Intein-Mediated Split-nCas9 System for Base Editing in Plants. | LitMetric

An Intein-Mediated Split-nCas9 System for Base Editing in Plants.

ACS Synth Biol

Biosciences Division, Oak Ridge National Laboratory, Oak Ridge, Tennessee 37831, United States.

Published: July 2022

AI Article Synopsis

  • - The research presents a novel method for delivering the CRISPR/Cas9 genome editing system in plants using viral vectors, solving issues related to their limited packaging capacity.
  • - This method involves a dual-vector system that utilizes split inteins to separate the CRISPR/Cas9 components, allowing them to reassemble and function after co-infection in plant cells.
  • - The study successfully demonstrated the efficiency of this split system in inducing base editing in plants, paving the way for further innovations in CRISPR applications and biodesign strategies.

Article Abstract

Virus-assisted delivery of the clustered regularly interspaced short palindromic repeats (CRISPR)/CRISPR-associated (Cas) system represents a promising approach for editing plant genomes. Among the CRISPR/Cas systems, CRISPR/Cas9 is most widely used; however, to pack the relatively large size of the CRISPR/Cas9 system into viral vectors with confined packaging capacity is challenging. To address this technical challenge, we developed a strategy based on split inteins that splits the required CRISPR/Cas9 components across a dual-vector system. The CRISPR/Cas reassembles into an active form following co-infection to achieve targeted genome editing in plant cells. An intein-mediated split system was adapted and optimized in plant cells by a successful demonstration of split-eYGFPuv expression. Using a plant-based biosensor, we demonstrated for the first time that the split-nCas9 can induce efficient base editing in plant cells. We identified several split sites for future biodesign strategies. Overall, this strategy provides new opportunities to bridge different CRISPR/Cas9 tools including base editor, prime editor, and CRISPR activation with virus-mediated gene editing.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9295155PMC
http://dx.doi.org/10.1021/acssynbio.1c00507DOI Listing

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