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Defining genome-wide CRISPR–Cas genome-editing nuclease activity with GUIDE-seq

  • Nikolay L. Malinin
  • , GaHyun Lee
  • , Cicera R. Lazzarotto
  • , Yichao Li
  • , Zongli Zheng
  • , Nhu T. Nguyen
  • , Matthew Liebers
  • , Ved V. Topkar
  • , A. John Iafrate
  • , Long P. Le
  • , Martin J. Aryee
  • , J. Keith Joung
  • , Shengdar Q. Tsai*
  • *Corresponding author for this work

Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

Abstract

Genome-wide unbiased identification of double-stranded breaks enabled by sequencing (GUIDE-seq) is a sensitive, unbiased, genome-wide method for defining the activity of genome-editing nucleases in living cells. GUIDE-seq is based on the principle of efficient integration of an end-protected double-stranded oligodeoxynucleotide tag into sites of nuclease-induced DNA double-stranded breaks, followed by amplification of tag-containing genomic DNA molecules and high-throughput sequencing. Here we describe a detailed GUIDE-seq protocol including cell transfection, library preparation, sequencing and bioinformatic analysis. The entire protocol including cell culture can be completed in 9 d. Once tag-integrated genomic DNA is isolated, library preparation, sequencing and analysis can be performed in 3 d. The result is a genome-wide catalog of off-target sites ranked by nuclease activity as measured by GUIDE-seq read counts. GUIDE-seq is one of the most sensitive cell-based methods for defining genome-wide off-target activity and has been broadly adopted for research and therapeutic use.
Original languageEnglish
Pages (from-to)5592–5615
JournalNature Protocols
Volume16
Issue number12
Online published12 Nov 2021
DOIs
Publication statusPublished - Dec 2021

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