Multi-omic Analyses Reveal Minimal Impact of the CRISPR-Cas9 Nuclease on Cultured Human Cells
Jiali Qiang, Zaijun Ma, Xingxing Xie, Linyu Shi, Yang Geng, Junhao Hu, Rui Liu, Nan Liu, Yaoyang Zhang
Journal:JOURNAL OF PROTEOME RESEARCH
IF:3.78
DOI:10.1021/acs.jproteome.8b00751
PMID:30672298
Published:2019-01-23
research field:药学酶模拟急性肾损伤治疗纳米医学活性氧生物学
Abstract
The CRISPR-Cas9 system is a genomic editing tool widely used in basic research and under investigation for potential applications in gene therapies for human diseases. To accomplish genomic editing, the system requires the expression of a prokaryotic DNA endonuclease enzyme, Cas9, in host cells. Previous studies have mainly focused on the specificity of Cas9 on the host genome, and thus it is unclear whether this bacterium-derived enzyme affects the protein homeostasis of host cells. Here we applied multi-omic analyses, including transcriptome, proteome, phosphoproteome, Cas9-associated protein interactome, protein synthesis, and histone epigenetic modification, to investigate the cellular response of human cells upon the expression of Cas9. We demonstrate that Cas9 has minimal impact on host cells. Our assessment of intracellular effects of Cas9 paves a path for its broad applications in biological studies and potential clinical translations.
本文使用的Yeasen产品


