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Targeting CDC7 potentiates ATR-CHK1 signaling inhibition through induction of DNA replication stress in liver cancer.

Yuchen Guo ,
Jun Wang ,
Bente Benedict ,
Chen Yang ,
Frank van Gemert ,
Xuhui Ma ,
Dongmei Gao ,
Hui Wang ,
Shu Zhang ,
Cor Lieftink ,
Roderick L Beijersbergen ,
Hein Te Riele ,
Xiaohang Qiao ,
Qiang Gao ,
Chong Sun ,
Wenxin Qin ,
René Bernards ,
Cun Wang

Abstract

METHODS

Integrated bioinformatics analyses and a non-biased CRISPR loss of function genetic screen were performed to identify potential therapeutic targets for HCC cells. Whole-transcriptome sequencing (RNA-Seq) and time-lapse live imaging were performed to explore the mechanisms of the synergy between CDC7 inhibition and ATR or CHK1 inhibitors in HCC cells. Multiple in vitro and in vivo assays were used to validate the synergistic effects.

CONCLUSIONS

Our data highlights the potential of targeting ATR-CHK1 signaling, either alone or in combination with CDC7 inhibition, for the treatment of liver cancer.

RESULTS

Through integrated bioinformatics analyses using the Cancer Dependency Map and the TCGA database, we identified ATR-CHK1 signaling as a therapeutic target for liver cancer. Pharmacological inhibition of ATR or CHK1 leads to robust proliferation inhibition in liver cancer cells having a high basal level of replication stress. For liver cancer cells that are resistant to ATR or CHK1 inhibition, treatment with CDC7 inhibitors induces strong DNA replication stress and consequently such drugs show striking synergy with ATR or CHK1 inhibitors. The synergy between ATR-CHK1 inhibition and CDC7 inhibition probably derives from abnormalities in mitosis inducing mitotic catastrophe.

BACKGROUND

Liver cancer is one of the most commonly diagnosed cancers and the fourth leading cause of cancer-related death worldwide. Broad-spectrum kinase inhibitors like sorafenib and lenvatinib provide only modest survival benefit to patients with hepatocellular carcinoma (HCC). This study aims to identify novel therapeutic strategies for HCC patients.

More about this publication

Genome medicine

Volume 13
Issue nr. 1
Pages 166
Publication date 18-10-2021

Full text links

Publisher website (DOI) 10.1186/s13073-021-00981-0
Europe PubMed Central 34663432
Pubmed 34663432

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