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Gene knock-out chain reaction enables high disruption efficiency of HPV18 E6/E7 genes in cervical cancer cells.


ABSTRACT: A genome editing tool targeting the high-risk human papillomavirus (HPV) oncogene is a promising therapeutic strategy to treat HPV-related cervical cancer. To improve gene knockout efficiency, we developed a gene knockout chain reaction (GKCR) method for continually generating mutagenic disruptions and used this method to disrupt the HPV18 E6 and E7 genes. We verified that the GKCR Cas9/guide RNA (gRNA) cassettes could integrated into the targeted loci via homology-independent targeted insertion (HITI). The qPCR results revealed that the GKCR method enabled a relatively higher Cas9/gRNA cassette insertion rate than a control method (the common CRISPR-Cas9 strategy). Tracking of Indels by DEcomposition (TIDE) assay results showed that the GKCR method produced a significantly higher percentage of insertions or deletions (indels) in the HPV18 E6 and E7 genes. Furthermore, by targeting the HPV18 E6/E7 oncogenes, we found that the GKCR method significantly upregulated the P53/RB proteins and inhibited the proliferation and motility of HeLa cells. The GKCR method significantly improved the gene knockout efficiency of the HPV18 E6/E7 oncogenes, which might provide new insights into treatment of HPV infection and related cervical cancer.

SUBMITTER: Tian R 

PROVIDER: S-EPMC8733033 | biostudies-literature | 2022 Mar

REPOSITORIES: biostudies-literature

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Gene knock-out chain reaction enables high disruption efficiency of HPV18 <i>E6</i>/<i>E7</i> genes in cervical cancer cells.

Tian Rui R   Liu Jiashuo J   Fan Weiwen W   Li Rui R   Cui Zifeng Z   Jin Zhuang Z   Huang Zhaoyue Z   Xie Hongxian H   Li Lifang L   Huang Zheying Z   Hu Zheng Z   Zhou Ping P   Tian Xun X  

Molecular therapy oncolytics 20211218


A genome editing tool targeting the high-risk human papillomavirus (HPV) oncogene is a promising therapeutic strategy to treat HPV-related cervical cancer. To improve gene knockout efficiency, we developed a gene knockout chain reaction (GKCR) method for continually generating mutagenic disruptions and used this method to disrupt the HPV18 <i>E6</i> and <i>E7</i> genes. We verified that the GKCR Cas9/guide RNA (gRNA) cassettes could integrated into the targeted loci via homology-independent targ  ...[more]

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