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Mutation Research|November 26, 2003
The interacting pathways for prevention and repair of oxidative DNA damageGeir Slupphaug, Bodil Kavli, Hans E KrokanJournal of Molecular Medicine (Berlin, Germany)|February 27, 2004
Novel aspects of macromolecular repair and relationship to human diseaseHans E Krokan, Bodil Kavli, Geir SlupphaugDNA Repair|June 21, 2005
Xenopus CENP-A assembly into chromatin requires base excision repair proteinsSamantha G Zeitlin, Sheetal Patel, Bodil Kavli, et al.DNA Repair|November 23, 2006
Uracil in DNA--general mutagen, but normal intermediate in acquired immunityBodil Kavli, Marit Otterlei, Geir Slupphaug, et al.Biochemistry|March 14, 2007
NEIL1 is the major DNA glycosylase that processes 5-hydroxyuracil in the proximity of a DNA single-strand breakJason L Parsons, Bodil Kavli, Geir Slupphaug, et al.DNA Repair|April 10, 2012
Strikingly different properties of uracil-DNA glycosylases UNG2 and SMUG1 may explain divergent roles in processing of genomic uracilBerit Doseth, Cecilie Ekre, Geir Slupphaug, et al.Experimental Cell Research|July 25, 2006
Genomic uracil and human diseaseLars Hagen, Javier Peña-Diaz, Bodil Kavli, et al.Experimental Cell Research|January 18, 2014
Activation-induced cytidine deaminase (AID) is localized to subnuclear domains enriched in splicing factorsYi Hu, Ida Ericsson, Berit Doseth, et al.Nucleic Acids Research|June 1, 2007
Uracil-DNA glycosylases SMUG1 and UNG2 coordinate the initial steps of base excision repair by distinct mechanismsHenrik Sahlin Pettersen, Ottar Sundheim, Karin Margaretha Gilljam, et al.DNA Repair|April 22, 2014
Error-free versus mutagenic processing of genomic uracil--relevance to cancerHans E Krokan, Pål Sætrom, Per Arne Aas, et al.Pageof 4