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Results: 1-7 |
Results: 7

Authors: Cappelli, E Hazra, T Hill, JW Slupphaug, G Bogliolo, M Frosina, G
Citation: E. Cappelli et al., Rates of base excision repair are not solely dependent on levels of initiating enzymes, CARCINOGENE, 22(3), 2001, pp. 387-393

Authors: Krokan, HE Otterlei, M Nilsen, H Kavli, B Skorpen, F Andersen, S Skjelbred, C Akbari, M Aas, PA Slupphaug, G
Citation: He. Krokan et al., Properties and functions of human Uracil-DNA glycosylase from the UNG gene, PROG NUCL A, 68, 2001, pp. 365-386

Authors: Nilsen, H Rosewell, I Robins, P Skjelbred, CF Andersen, S Slupphaug, G Daly, G Krokan, HE Lindahl, T Barnes, DE
Citation: H. Nilsen et al., Uracil-DNA glycosylase (UNG)-deficient mice reveal a primary role of the enzyme during DNA replication, MOL CELL, 5(6), 2000, pp. 1059-1065

Authors: Nilsen, H Steinsbekk, KS Otterlei, M Slupphaug, G Aas, PA Krokan, HE
Citation: H. Nilsen et al., Analysis of uracil-DNA glycosylases from the murine Ung gene reveals differential expression in tissues and in embryonic development and a subcellular sorting pattern that differs from the human homologues, NUCL ACID R, 28(12), 2000, pp. 2277-2285

Authors: Parikh, SS Walcher, G Jones, GD Slupphaug, G Krokan, HE Blackburn, GM Tainer, JA
Citation: Ss. Parikh et al., Uracil-DNA glycosylase-DNA substrate and product structures: Conformational strain promotes catalytic efficiency by coupled stereoelectronic effects, P NAS US, 97(10), 2000, pp. 5083-5088

Authors: Krokan, HE Nilsen, H Skorpen, F Otterlei, M Slupphaug, G
Citation: He. Krokan et al., Base excision repair of DNA in mammalian cells, FEBS LETTER, 476(1-2), 2000, pp. 73-77

Authors: Otterlei, M Warbrick, E Nagelhus, TA Haug, T Slupphaug, G Akbari, M Aas, PA Steinsbekk, K Bakke, O Krokan, HE
Citation: M. Otterlei et al., Post-replicative base excision repair in replication foci, EMBO J, 18(13), 1999, pp. 3834-3844
Risultati: 1-7 |