4.6 Article

XRCC1 deficiency increased the DNA damage induced by γ-ray in HepG2 cell: Involvement of DSB repair and cell cycle arrest

Journal

ENVIRONMENTAL TOXICOLOGY AND PHARMACOLOGY
Volume 36, Issue 2, Pages 311-319

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.etap.2013.04.009

Keywords

XRCC1 gene; Hepatocellular carcinoma cells; gamma-ray irradiation; DNA damage; DNA repair

Funding

  1. National Natural Science Foundation of China [81072269, 81102151]
  2. National Funds for Distinguished Young Scientist of China [30625031]
  3. Hebei Natural Science Foundation [C2011206048]

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gamma-ray irradiation can induce DNA damages which include base damages, single-strand breaks and double-strand breaks in various type cells. The DNA repair protein XRCC1, as a part of the BER pathway, forms complexes with DNA polymerase beta, DNA ligase III and poly-ADP-ribose polymerase (PARP) in the repair of DNA single strand breaks and also affects the repair of double strand breaks. However, it is still not known well whether XRCC1 contributes to affect the irradiation sensitivity and DNA damage in HepG2 cell and the potential mechanism. Hence, the purpose of this study was to explore whether abrogation of XRCC1 gene expression by shRNA could reduce DNA repair and thus sensitize HepG2 cells to gamma-ray. Cell viability was measured by Trypan blue staining and cloning efficiency assay. The DNA damage was detected by Comet assay. Apoptosis and cell cycle were detected by flow cytometry. The DNA-PKcs and gadd153 mRNA expression were determined by Real-time PCR. Our results showed that abrogation of XRCC 1 could sensitize HepG2 cells to gamma-ray. This enhanced sensitivity could be attributed to the increased DNA damage and increased cell cycle arrest, which might be related with the increasing of DNA-PKcs and gadd153 mRNA expression. Therefore, our results suggested that the gamma-ray irradiation sensitivity could be increased by targeting inhibition of XRCC1 in HepG2 cell. (C) 2013 Elsevier B.V. All rights reserved.

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