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FEBS Letters|September 7, 1992
DNA base modifications in chromatin of human cancerous tissuesR Olinski, T Zastawny, J Budzbon, et al.Proteins|May 17, 2000
Assignment of enzyme substrate specificity by principal component analysis of aligned protein sequences: an experimental test using DNA glycosylase homologsA Gogos, D Jantz, S Sentürker, et al.Carcinogenesis|May 20, 1999
Effects of Ni(II) and Cu(II) on DNA interaction with the N-terminal sequence of human protamine P2: enhancement of binding and mediation of oxidative DNA strand scission and base damageR Liang, S Senturker, X Shi, et al.Cancer Letters|September 10, 1996
DNA base damage in lymphocytes of cancer patients undergoing radiation therapyR Olinski, T H Zastawny, M Foksinski, et al.Radiation Research|August 1, 1989
Quantitative measurement of radiation-induced base products in DNA using gas chromatography-mass spectrometryA F Fuciarelli, B J Wegher, E Gajewski, et al.FEBS Letters|December 31, 1997
Oxidative DNA base damage and antioxidant enzyme levels in childhood acute lymphoblastic leukemiaS Sentürker, B Karahalil, M Inal, et al.Environmental Microbiology|May 20, 2009
Salt shield: intracellular salts provide cellular protection against ionizing radiation in the halophilic archaeon, Halobacterium salinarum NRC-1A Kish, G Kirkali, C Robinson, et al.Chemical Research in Toxicology|July 18, 2000
Ni(II) specifically cleaves the C-terminal tail of the major variant of histone H2A and forms an oxidative damage-mediating complex with the cleaved-off octapeptideW Bal, R Liang, J Lukszo, et al.The Journal of Biological Chemistry|June 23, 2000
Characterization of a novel 8-oxoguanine-DNA glycosylase activity in Escherichia coli and identification of the enzyme as endonuclease VIIIT K Hazra, T Izumi, R Venkataraman, et al.Biochemistry|October 3, 2001
Substrate specificity and excision kinetics of Escherichia coli endonuclease VIII (Nei) for modified bases in DNA damaged by free radicalsM Dizdaroglu, S M Burgess, P Jaruga, et al.Pageof 12