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Massively targeted evaluation of therapeutic CRISPR off-targets in cells

Medicine and Health

Massively targeted evaluation of therapeutic CRISPR off-targets in cells

X. Pan, K. Qu, et al.

Discover SURRO-seq, a groundbreaking method developed by a team of researchers including Xiaoguang Pan and Kunli Qu, for high-throughput identification of CRISPR RNA-guided nucleases off-target effects. This innovative approach reveals significant insights into RGN specificity and its implications for safer gene therapies.... show more
Abstract
Methods for sensitive and high-throughput evaluation of CRISPR RNA-guided nucleases (RGNs) off-targets (OTs) are essential for advancing RGN-based gene therapies. Here we report SURRO-seq for simultaneously evaluating thousands of therapeutic RGN OTs in cells. SURRO-seq captures RGN-induced indels in cells by pooled lentiviral OTs libraries and deep sequencing, an approach comparable and complementary to OTs detection by T7 endonuclease, GUIDE-seq, and CIRCLE-seq. Application of SURRO-seq to 8150 OTs from 110 therapeutic RGNs identifies significantly detectable indels in 783 OTs, of which 37 OTs are found in cancer genes and 23 OTs are further validated in five human cell lines by targeted amplicon sequencing. Finally, SURRO-seq reveals that thermodynamically stable wobble base pair (rGdT) and free binding energy strongly affect RGN specificity. Our study emphasizes the necessity of thoroughly evaluating therapeutic RGN OTs to minimize inevitable off-target effects.
Publisher
Nature Communications
Published On
Jan 30, 2022
Authors
Xiaoguang Pan, Kunli Qu, Hao Yuan, Xi Xiang, Christian Anthon, Liubov Pashkova, Xue Liang, Peng Han, Giulia I. Corsi, Fengping Xu, Ping Liu, Jiayan Zhong, Yan Zhou, Tao Ma, Hui Jiang, Junnian Liu, Jian Wang, Niels Jessen, Lars Bolund, Huanming Yang, Xun Xu, George M. Church, Jan Gorodkin, Lin Lin, Yonglun Luo
Tags
CRISPR
off-target effects
gene therapies
SURRO-seq
nucleases
indels
therapeutic RGNs
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