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dc.contributor.authorAkbari, Mansournb_NO
dc.date.accessioned2014-12-19T14:17:48Z
dc.date.available2014-12-19T14:17:48Z
dc.date.created2008-01-10nb_NO
dc.date.issued2006nb_NO
dc.identifier123201nb_NO
dc.identifier.isbn82-471-7858-3nb_NO
dc.identifier.urihttp://hdl.handle.net/11250/263321
dc.languageengnb_NO
dc.publisherDet medisinske fakultetnb_NO
dc.relation.ispartofseriesDoktoravhandlinger ved NTNU, 1503-8181; 2006:56nb_NO
dc.relation.haspartKavli, Bodil; Sundheim, Ottar; Akbari, Mansour; Otterlei, Marit; Nilsen, Hilde; Skorpen, Frank; Aas, Per Arne; Hagen, Lars; Krokan, Hans E.; Slupphaug, Geir. hUNG2 Is the Major Repair Enzyme for Removal of Uracil from U:A Matches, U:G Mismatches, and U in Single-stranded DNA, with hSMUG1 as a Broad Specificity Backup. J. Biol. Chem. 277(42): 39926-39936, 2002.nb_NO
dc.relation.haspartPeña-Diaz, Javier; Akbari, Mansour; Sundheim, Ottar; Farez-Vidal, M. Esther; Andersen, Sonja; Sneve, Ragnhild; Gonzalez-Pacanowska, Dolores; Krokan, Hans E; Slupphaug, Geir. Trypanosoma cruzi Contains a Single Detectable Uracil-DNA Glycosylase and Repairs Uracil Exclusively Via Short Patch Base Excision Repair. Journal of Molecular Biology. 342(3): 787-799, 2004.nb_NO
dc.relation.haspartAkbari, Mansour; Otterlei, Marit; Peña-Diaz, Javier; Aas, Per Arne; Kavli, Bodil; Liabakk, Nina B; Hagen, Lars; Imai, Kohsuke; Durandy, Anne; Slupphaug, Geir; Krokan, Hans E. Repair of U/G and U/A in DNA by UNG2-associated repair complexes takes place predominantly by short-patch repair both in proliferating and growth-arrested cells. Nucleic Acids Research. 32(18): 5486-5498, 2004.nb_NO
dc.relation.haspartAkbari, Mansour; Otterlei, Marit; Krokan, Hans E.. Different organization of Base Excision Repair of uracil in DNA in Nuclei and Mitochondria. .nb_NO
dc.relation.haspartKvaløy, Kirsti; Nilsen, Hilde; Steinbekk, Kristin S; Nedal, Aina; Monterotti, Bruno; Akbari, Mansour; Krokan, Hans E. Sequence variation in the human uracil-DNA glycosylase (UNG) gene. Mutation Research. 461: 325-338, 2001.nb_NO
dc.relation.haspartAkbari, Mansour. Low Copy Number DNA Template Can Render Polymerase Chain Reaction Error Prone in a Sequence-Dependent Manner. Journal of Molecular Diagnostics,. 7(1): 36-39, 2005.nb_NO
dc.titleHuman Base Excision Repair for Preservation of Genomic Stabilitynb_NO
dc.typeDoctoral thesisnb_NO
dc.contributor.departmentNorges teknisk-naturvitenskapelige universitet, Det medisinske fakultet, Institutt for kreftforskning og molekylær medisinnb_NO


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