Impaired Repair of Ionizing Radiation-Induced DNA Damage in Cockayne Syndrome Cells

被引:15
作者
Cramers, Patricia [1 ,2 ]
Verhoeven, Esther E. [1 ]
Filon, A. Ronald [1 ]
Rockx, Davy A. P. [1 ]
Santos, Susy J. [1 ]
van der Leer, Anneke A. [1 ]
Kleinjans, Jos C. S. [2 ]
van Zeeland, Albert A. [1 ]
Mullenders, Leon H. F. [1 ]
机构
[1] Leiden Univ, Med Ctr, Dept Toxicogenet, NL-2300 RC Leiden, Netherlands
[2] Maastricht Univ, Dept Hlth Risk Anal & Toxicol, NL-6200 MD Maastricht, Netherlands
关键词
RNA-POLYMERASE-II; NUCLEOTIDE EXCISION-REPAIR; TRANSCRIPTION-COUPLED REPAIR; XERODERMA-PIGMENTOSUM FIBROBLASTS; GROUP-B PROTEIN; PYRIMIDINE DIMERS; OXIDATIVE STRESS; MAMMALIAN-CELLS; STRAND BREAKS; GENE-PRODUCT;
D O I
10.1667/RR1972.1
中图分类号
Q [生物科学];
学科分类号
090105 [作物生产系统与生态工程];
摘要
Cramers, P., Verhoeven, E. E., Filon, A. R., Rockx, D. A. P., Santos, S. J., van der Leer, A. A., Kleinjans, J. C. S., van Zeeland, A. A. and Mullenders, L. H. F. Impaired Repair of Ionizing Radiation-Induced DNA Damage in Cockayne Syndrome Cells. Radiat. Res. 175, 432-443 (2011). Cockayne syndrome (CS) cells are defective in transcription-coupled repair (TCR) and sensitive to oxidizing agents, including ionizing radiation. We examined the hypothesis that TCR plays a role in ionizing radiation-induced oxidative DNA damage repair or alternatively that CS plays a role in transcription elongation after irradiation. Irradiation with doses up to 100 Gy did not inhibit RNA polymerase II-dependent transcription in normal and CS-B fibroblasts. In contrast, RNA polymerase I-dependent transcription was severely inhibited at 5 Gy in normal cells, indicating different mechanisms of transcription response to X rays. The frequency of radiation-induced base damage was 2 x 10(-7) lesions/base/Gy, implying that 150 Gy is required to induce one lesion/30-kb transcription unit; no TCR of X-ray-induced base damage in the p53 gene was observed. Therefore, it is highly unlikely that defective TCR underlies the sensitivity of CS to ionizing radiation. Overall genome repair levels of radiation-induced DNA damage measured by repair replication were significantly reduced in CS-A and CS-B cells. Taken together, the results do not provide evidence for a key role of TCR in repair of radiation-induced oxidative damages in human cells; rather, impaired repair of oxidative lesions throughout the genome may contribute to the CS phenotype. (C) 2011 by Radiation Research Society
引用
收藏
页码:432 / 443
页数:12
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