Knockdown of POLQ interferes the development and progression of hepatocellular carcinoma through regulating cell proliferation, apoptosis and migration

Author:

Pan Qi,Wang Lu,Liu Yu,Li Min,Zhang Yao,Peng Wei,Deng Tan,Peng Mei-Ling,Jiang Jin-Qiong,Tang Jiao,Wang Jingjing,Duan Hua-Xin,Fan Sha-ShaORCID

Abstract

Abstract Background DNA Polymerase Theta (POLQ) is a DNA polymerase involved in error-prone translesion DNA synthesis (TLS) and error-prone repair of DNA double-strand breaks (DSBs), whose function in hepatocellular carcinoma has not been investigated. Methods In the present study, both the data collected from the Cancer Genome Atlas (TCGA) and our group’s results showed higher POLQ expression in HCC tissues than the para-cancerous tissues, which was associated with higher malignancy and poor prognosis. POLQ knockdown HCC cell model (shPOLQ) was constructed along with the corresponding negative control (shCtrl) through lentivirus infection for loss-of-function study. Results We found that, upon knockdown of POLQ, the proliferation and migration of HCC cells decreased and apoptosis percentage increased. Moreover, the percentage of cells in G2 phase significantly increased in shPOLQ group compared with shCtrl group. Xenografts in mice grafted with shPOLQ cells grew much slower than that transplanted with shCtrl cells, and expressed lower Ki67 level. Furthermore, an apoptosis-related signaling array was used to explore the involvement of downstream signaling pathways, suggesting the enhanced phosphorylation of HSP27 and JNK, and the de-activation of mTOR, PRAS40, ERK1/2 and STAT3 pathways. Conclusions Collectively, our study revealed that POLQ may participate in the development of HCC, depletion of which may be a promising treatment strategy for HCC.

Funder

natural science foundation of hunan province

Science and Technology Bureau, Changsha

Technology Plan Of Youth Natural Science Foundation Hunan Province

Hunan Provincial Health Commission General Project

Shanghai Natural Science Foundation

Publisher

Springer Science and Business Media LLC

Subject

Cancer Research,Genetics,Oncology

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