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Methods for Enhancing Clustered Regularly Interspaced Short Palindromic Repeats/Cas9-Mediated Homology-Directed Repair Efficiency. | LitMetric

Methods for Enhancing Clustered Regularly Interspaced Short Palindromic Repeats/Cas9-Mediated Homology-Directed Repair Efficiency.

Front Genet

Veterinary Immunology Laboratory, Department of Preventive Veterinary Medicine, College of Veterinary Medicine, Northwest Agriculture and Forestry University, Yangling, China.

Published: June 2019

AI Article Synopsis

  • - Organisms have developed mechanisms to protect their DNA, but damage can occur, necessitating DNA repair pathways, especially for double-strand breaks in eukaryotes like mammals.
  • - There are two main repair pathways: nonhomologous DNA end joining, which can lead to errors, and homologous recombination, which is more precise but less efficient.
  • - The text discusses strategies to enhance the efficiency of homologous directed repair by manipulating the cell cycle, boosting key proteins for homologous recombination, and choosing suitable donor DNA.

Article Abstract

The evolution of organisms has provided a variety of mechanisms to maintain the integrity of its genome, but as damage occurs, DNA damage repair pathways are necessary to resolve errors. Among them, the DNA double-strand break repair pathway is highly conserved in eukaryotes, including mammals. Nonhomologous DNA end joining and homologous directed repair are two major DNA repair pathways that are synergistic or antagonistic. Clustered regularly interspaced short palindromic repeats genome editing techniques based on the nonhomologous DNA end joining repair pathway have been used to generate highly efficient insertions or deletions of variable-sized genes but are error-prone and inaccurate. By combining the homology-directed repair pathway with clustered regularly interspaced short palindromic repeats cleavage, more precise genome editing insertion or deletion of the desired fragment can be performed. However, homologous directed repair is not efficient and needs further improvement. Here, we describe several ways to improve the efficiency of homologous directed repair by regulating the cell cycle, expressing key proteins involved in homologous recombination and selecting appropriate donor DNA.

Download full-text PDF

Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6590329PMC
http://dx.doi.org/10.3389/fgene.2019.00551DOI Listing

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