DNA Damage Analysis Using an Automated DNA Sequencer
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Publisher
Springer US
Link
http://link.springer.com/content/pdf/10.1007/978-1-4899-0301-3_14
Reference27 articles.
1. Ansorge, W., Sproat, B., Stegemann, J., Schwager, C., and Zenke, M. (1987). Automated DNA sequencing: Ultrasensitive detection of fluorescent bands during electrophoresis. Nucleic Acids Res. 15:4593–4602.
2. Brash, D., Seetharam, S., Kraemer, K. H., Seidman, M. M., and Bredberg, A. (1987). Photoproduct frequency is not the major determinant of UV base substitution hot spots or cold spots in human cells. Proc. Natl. Acad. Sci. USA 84:3782–3786.
3. Chen, D. Y., Swerdlow, H. P., Harke, H. R., Zhang, J. Z., and Dovichi, N. J. (1991). Low-cost, high-sensitivity laser-induced fluorescence detection for DNA sequencing by capillary gel electrophoresis. J. Chromatogr. 559:237–246.
4. Comess, K. M., Burstyn, J. N., Essigmann, J. M., and Lippard, S. J. (1992). Replication inhibition and translesion synthesis on templates containing site-specifically placed cis-diamminedichloroplatinum(II) DNA adducts. Biochemistry 31:3975–3990.
5. Drobetsky, E. A., and Sage, E. (1993). UV-induced G:C to A:T transitions at the aprt locus of Chinese hamster ovary cells cluster at frequently damaged 5′-TCC-3′ sequences. Mutai. Res. 289:131–136.
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