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Article

Human and rodent cell lines showing no differences in the induction but differing in the repair kinetics of radiation‐induced DNA base damage

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Pages 29-38 | Received 11 Jun 2003, Accepted 10 Oct 2003, Published online: 03 Jul 2009

References

  • AVRUTSKAYA, A. V. and LEADON, S. A., 2000, Measurement of oxidative DNA damage and repair in specific DNA sequences. Methods 2000, 22, 127–134.
  • BANATH, J. P., WALLACE, S. S., THOMPSON, J. and OLIVE, P. L., 1999, Radiation-induced DNA base damage detected in individual aerobic and hypoxic cells with endonuclease III and formamidopyrimidine-glycosylase. Radiation Research, 151, 550–558.
  • BAUCHINGER, M., ScHmio, E. and BRASELMANN, H., 1986, Cell survival and radiation induced chromosome aberrations II. Experimental findings in human lymphocytes analysed in first and second post-irradiation metaphases. Radiation and Environmental Biophysics, 25, 253–260.
  • BEDFORD, J. S. and CORNFORTH, M. N., 1987, Relationship between the recovery from sublethal X-ray damage and the rejoining of chromosome breaks in normal human fibroblasts. Radiation Research, 111, 406–423.
  • BLAISDELL, J. 0. and WALLACE, S. S., 2001, Abortive base-excision repair of radiation-induced clustered DNA lesions in Eschefichia coli. Proceedings of the National Academy of Sciences, USA, 98, 7426–7430.
  • CADET, J., D'HAM, C., DOUKI, T., POUGET, J. L. and SAUVAIGO, S., 1998, Facts and artifacts in the measurement of oxidative base damage to DNA. Free Radical Research, 29, 541–550.
  • CADET, J., DOUKI, T., FRELON, S., SAUVAIGO, S., POUGET, J. P. and RAVANAT, J. L., 2002, Assessment of oxidative base damage to isolated and cellular DNA by HPLC-MS/ MS. Free Radicals in Biology and Medicine, 33, 441–449.
  • CHEN, S.-K., TSAI, M.-H., LIN, C.-H., HWANG, J. J. and CHAN, W. P., 2001, Determination of 8-oxoguanine in individual cell nucleus of gamma-irradiated mammalian cells. Radiation Research, 155, 832–836.
  • COLLINS, A. R., AI-Guo, M. and DUTHIE, S. J., 1995, The kinetics of repair of oxidative DNA damage (strand breaks and oxidised pyrimiclines) in human cells. Mutation Research, 336, 69–77.
  • COLLINS, A. R., DurmE, S. J. and DOBSON, V. L., 1993, Direct enzymic detection of endogenous oxidative base damage in human lymphocyte DNA. Carcinogenesis, 14, 1733–1735.
  • CZENE, S. and HARMS-RINGDAHL, M., 1995, Detection of single-strand breaks and formamidopyrimidine-DNA glycosylase-sensitive sites in DNA of cultured human fibroblasts. Mutation Research, 336, 235–242.
  • DAHM-DAPHI, J., BRAMMER, I. and DIKOMEY, E., 1997, Heat effects on the repair of DNA double-strand breaks in CHO cells. International Journal of Radiation Biology, 72, 171–179.
  • DAHM-DAPHI, J. and DIKOMEY, E., 1996, Rejoining of DNA double-strand breaks in X-irradiated CHO cells studied by constant- and graded-field gel electrophoresis. International Journal of Radiation Biology, 69, 615–621.
  • DEMPLE, B. and HARRISON, L., 1994, Repair of oxidative damage to DNA: Enzymology and Biology. Annual Review of Biochemistry, 63, 915–948.
  • DIKOMEY, E. and BRAMMER, I., 2000, Relationship between cellular racliosensitivity and non-repaired double-strand breaks studied for different growth states, dose rates and plating conditions in a normal human fibroblast line. International Journal of Radiation Biology, 76, 773–781.
  • DIKOMEY, E. and Du, D., 2000, Effect of heat on dsbs repair in G 1- and S-phase studied in the human HeLa S3 cell line. International Journal of Radiation Biology, 76, 1335–1341.
  • DIKOMEY, E., FLENTJE, M. and DAHAA-DAPRi, J., 1995, Comparison between the alkaline unwinding technique and the neutral filter elution using CHO, V79 and EAT cells. International Journal of Radiation Biology, 67, 269–275.
  • DIKOMEY, E. and FRANZKE, J., 1986, Three classes of DNA strand breaks induced by X-irradiation and internal B-rays. International Journal of Radiation Biology, 50, 893–908.
  • DIKOMEY, E. and JUNG, H., 1995, Correlation between thermal railiosensitization and slowly-rejoining DNA strand breaks in CHO cells. International Journal of Radiation Biology, 68, 227–233.
  • EL-AWADY, R. A., DIKOMEY, E. and DAHM-DAPHI, J., 2001, Heat effects on DNA repair after ionizing radiation. Hyperthermia commonly increases the number of non-repaired double strand breaks and structural rearrangements. Nucleic Acid Research, 29, 1960–1966.
  • EPE, B., PFLAUM, M., HARING, M., HEGLER, J. and RUDIGER, H., 1993, Use of repair endonucleases to characterize DNA damage induced by reactive oxygen species in cellular and cell-free systems. Toxicology Letters, 67, 57–72.
  • FINNIE, N. J., GOTTLIEB, T. M., BuiNT, T., JEGGO, P. A. and JACKSON, S. P., 1995, DNA-dependent protein kinase activity is absent in xrs-6 cells: implications for site-specific recombination and DNA double-strand break repair. Proceedings of the National Academy of Sciences, USA, 92, 320–324.
  • FOHE, C. and DIKOMEY, E., 1994, Induction and repair of X-ray-induced DNA base damage studied in CHO cells using the M. luteus extract. International Journal of Radiation Biology, 66, 697–704.
  • FORNACE, A. J., 1982, Measurement of M luteus endonuclease-sensitive lesions by alkaline elution. Mutation Research, 94, 263–276.
  • FURNACE, A. J., KINSELLA, T. J., DOBSON, P. P. and MITCHELL, J. B., 1986, Repair of ionizing radiation DNA base damage in ataxia-telangiectasia cells. Cancer Research, 46, 1703–1706.
  • FRELON, S., DOUKI, T., RAVANAT, J. L., POUGET, J. P., TORNABENE, C. and CADET, J., 2000, High-performance liquid chromatography-tandem mass spectrometry mea-surement of radiation-induced base damage to isolated and cellular DNA. Chemical Research of Toxicology, 13, 1002–1010.
  • GREINERT, R., DETZLER, E., VOLKMER, B. and HARDER, D., 1995, Kinetics of the formation of chromosome aberrations in X-irradiated human lymphocytes: analysis by premature chromosome condensation with delayed fusion. Radiation Research, 144, 190–197.
  • GUETENS, G., DE BOECK, G., HIGHLEY, M., VAN OOSTEROM, A. T. and DE BRUJIN, E. A., 2002, Oxidative DNA damage: biological significance and methods of analysis. Critical Review of Clinical Laboratory Science, 39, 331–457.
  • GULSTON, M., FULFORD, J., JENNER, T., DE LARA, C. and O'NETT.T P., 2002, Clustered DNA damage induced by y radiation in human fibroblasts (HF19), hamster (V79-4) cells and plasmid DNA is revealed as Fpg and Nth sensitive. Nucleic Acids Research, 30, 3464–3472.
  • HARRISON, L., HATAHET, Z., PURMAL, A. A. and WALLACE, S. S., 1998, Multiply damaged sites in DNA: interactions with Eschefichia coli endonucleases III and VIII. Nucleic Acids Research, 26, 932–941.
  • HARRISON, L., HATAHET, Z. and WALLACE, S. S., 1999, In vitro repair of synthetic ionizing radiation-induce multiply damaged DNA sites. Journal of Molecular Biology, 290, 667–684.
  • HENTOSH, P., 1988, Induction and repair of DNA damage in gamma-irradiated human lymphoblasts: irradiation in the presence and absence of misoniclazole. Radiation Research, 115, 436–447.
  • HENTOSH, P., HENNER, W. D. and REYNOLDS, R. J., 1985, Sequence specificity of DNA cleavage by Micrococcus luteus gamma endonuclease. Radiation Research, 102, 119–129.
  • JARUGA, P. and DIZDAROGLU, M., 1996, Repair of products of oxidative DNA base damage in human cells. Nucleic Acids Research, 24, 1389–1394.
  • KAMPINGA, H. H. and DIKOMEY, E., 2001, Hyperthermic railiosensitisation: mode of action and clinical relevance. International Journal of Radiation Biology, 77, 399–408.
  • KAmpiNGA, H. H., HIEMSTRA, Y. S., KONINGS, A. W. T. and DIKOMEY, E., 1997, Correlation between slowly repairable double-strand breaks and thermal radiosensitization in the human HeLa S3 cell line. International Journal of Radiation Biology, 72, 293–301.
  • KARAKAYA, A., JARUGA, P., BOHR, V. A., GROLLMAN, A. P. and DIZDAROGLU, M., 1997, Kinetics of excision of purine lesions from DNA by Eschefichia coli Fpg protein. Nucleic Acids Research, 25, 474–479.
  • LAVAL, F., 1994, Expression of the E. coli fpg gene in mammalian cells reduces the mutagenicity of y-rays. Nucleic Acids Research, 22, 4943–4946.
  • LE, X. C., XING, J. Z., LEE, J., LEADON, S. A. and WEINFELD, M., 1998, Inducible repair of thymine glycol detected by an ultrasensitive assay for DNA damage. Science, 280, 1066–1069.
  • LEADON, S. A., 1990, Production and repair of DNA Damage in mammalian cells. Health Physics, 59, 15–22.
  • LINDAHL, T., 2000, Suppression of spontaneous mutagenesis in human cells by DNA base excision-repair. Mutation Research, 462, 129–135.
  • MORI, T., HORI, Y. and DIZDAROGLU, M., 1993, DNA base damage generated in vivo in hepatic chromatin of mice upon whole body irradiation. International Journal of Radiation Biology, 64, 645–650.
  • NILSEN, H. and KRoKAN, H. E., 2001, Base excision repair in a network of defense and tolerance. Carcinogenesis, 2, 987–998.
  • OLIVE, P. L., BANATH, J. P. and DURAND, R. E., 1990, Heterogeneity in radiation-induced DNA damage and repair in tumor and normal cells measured using the comet assay. Radiation Research, 122, 86–94.
  • PFLAU MM., WILL, 0., MAHLER, H.-C. and EPE, B., 1999, DNA oxidation products determined with repair endonucleases in mammalian cells: types, basal levels and influences of cell proliferation. Free Radical Research, 29, 585–594.
  • PODLUTSKY, A. J., DIANOVA, I. I., PODUST, V. N., BOHR, V. A. and DIANOV, G. L., 2001, Human DNA polymerase B initiates DNA synthesis during long-patch repair of reduced AP sites in DNA. EMBO Journal, 20, 1477–1482.
  • POUGET, J. P., RAVANAT, J. L., DOUKI, T., RICHARD, M. J. and CADET, J., 1999, Measurement of DNA base damage in cells exposed to low doses of gamma-radiation: comparison between the HPLC-EC and comet assays. International Journal of Radiation Biology, 75, 51–58.
  • SAUVAIGO, S., PETEC-CALIN, C., CAILLAT, S., ODIN, F. and CADET, J., 2002, Comet assay coupled to repair enzymes for the detection of oxidative damage to DNA induced by low doses of gamma-radiation: use of YOY0-1, low-background slides, and optimized electrophoresis conditions. Analytical Biochemistry, 303, 107–109.
  • SIHGENAGA, M. K., ABOUJAOUDE, E. N., CHEN, Q. and AMES, B. N., 1994, Assays of oxidative DNA damage biomarkers 8-oxo-2'-deoxyguanosine and 8-oxoguanine in nuclear DNA and biological fluids by high-performance liquid chromatography with electrochemical detection. Methods Enzymology, 234, 16–33.
  • SINGH, N. P., McCoy, M. T., TICE, R. R. and SCHNEIDER, E. L., 1988, A simple technique for quantitation of low levels of DNA damage in individual cells. Experimental Cell Research, 175, 184–191.
  • SKov, K. A., PALC IC, B. and SKARSGARD, L. D., 1979, Radiosensitization of mammalian cells by misonidazole and oxygen: DNA damage exposed by Micrococcus luteus enzymes. Radiation Research, 79, 591–600.
  • SRIVASTAVA, D. K., VANDE BERG, B. J., PRASAD, R., MOLINA, J. T., BEARD, W. A., TOMKINSON, A. E. and WILSON, S. H., 1998, Mammalian abasic site base excision repair. Journal of Biological Chemistry, 273, 21 203–21 209.
  • STRUTHERS, L., PATEL, R., CLARK," and THOMAS, S., 1998, Direct detection of 8-oxodeoxyguanosine and 8-oxoguanine by avidin and its analogues. Analytical Biochemistry, 255, 20–31.
  • STUCK', M., PASCUCCI, B., PARLANTI, E., FORTINI, P., WILSON, S. H., HUBSCHER, U. and DoouoTri, E., 1998, Mammalian base excision repair by DNA polymerases d and e. Oncogene, 17, 835–843.
  • VAN LOON, A. A. W. M. V., GROENENDIJK, R. H., DER SCHANS, G. P. V., LOHMAN, P. H. M. and BAAN, R. A., 1991, Detection of base damage in DNA in human blood exposed to ionizing radiation at biologically relevant doses. International Journal of Radiation Biology, 59, 651–660.
  • VAN LOON, A. A. W. M. V., SONNEWALD, E., HOOGERBRUGGE, J., VAN DER SCHANS, G. P., GROOTEGOED, J. A., LOHMAN, P. H. M. and BAAN, R. A., 1993, Induction and repair of DNA single-strand breaks and DNA base damage at different cellular stages of spermatogenesis of the hamster upon in vitro exposure to ionizing radiation. Mutation Research, 294, 139–148.
  • WALLACE, S. S., 1994, DNA damage processed by excision repair: biological consequences. International Journal of Radiation Biology, 66, 579–589.
  • WARD, J. F., 1985, Biochemistry of DNA lesions. Radiation Research, 104, 103–111.
  • WARTERS, R. L. and ROTI Roil, J. L., 1978, Production and excision of 5',6'-dihydroxyclihydrothymine type products in the DNA of preheated cells. International Journal of Radiation Biology, 34, 381–384.
  • WEINFELD, M., XING, J. Z., LEE, J., LEADON, S. A. and LE, X. C., 2002, Immunofluorescence detection of radiation-induced DNA base damage. Military Medicine, 167, 2–4.
  • WEINFELD, M., XING, J. Z., LEE, J., LEADON, S. A., COOPER, P. K. and LE, X. C., 2001, Factors influencing the removal of thymine glycol from DNA in gamma-irradiated human cells. Progress in Nucleic Acid Research and Molecular Biology, 68, 139–149.
  • WILL, 0., SCHINDLER, D., BorrEux, S. and EPE, B., 1998, Fanconi's anaemia cells have normal steady-state levels and repair of oxidative DNA base modifications sensitive to Fpg protein. Mutation Research, 109, 65–72.
  • WILSON, S. H., 1998, Mammalian base excision repair and DNA polymerase beta. Mutation Research, 407, 203–215.
  • XING, J. Z., LEE, J., LEADON, S. S., WEINFELD, M. and LE, X. C., 2000, Measuring DNA damage using capillary electrophoresis with laser-induced fluorescence detection. Methods 2000, 22, 157–163.

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