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Molecular and Cellular Biology|March 19, 1999
Overlapping specificities of base excision repair, nucleotide excision repair, recombination, and translesion synthesis pathways for DNA base damage in Saccharomyces cerevisiaeR L Swanson, N J Morey, P W Doetsch, et al.Progress in Nucleic Acid Research and Molecular Biology|September 14, 2001
Yeast base excision repair: interconnections and networksP W Doetsch, N J Morey, R L Swanson, et al.Genetics|June 1, 1996
Destabilization of simple repetitive DNA sequences by transcription in yeastM Wierdl, C N Greene, A Datta, et al.Genetics|July 6, 2000
dpy-18 encodes an alpha-subunit of prolyl-4-hydroxylase in caenorhabditis elegansK L Hill, B D Harfe, C A Dobbins, et al.Development (Cambridge, England)|June 4, 1998
MyoD and the specification of muscle and non-muscle fates during postembryonic development of the C. elegans mesodermB D Harfe, C S Branda, M Krause, et al.Genes & Development|August 26, 1998
Analysis of a Caenorhabditis elegans Twist homolog identifies conserved and divergent aspects of mesodermal patterningB D Harfe, A Vaz Gomes, C Kenyon, et al.Genome|January 1, 1989
Recombination in yeast and the recombinant DNA technologyT D Petes, P Detloff, S Jinks-Robertson, et al.Biochemistry|September 2, 1999
Saccharomyces cerevisiae Ntg1p and Ntg2p: broad specificity N-glycosylases for the repair of oxidative DNA damage in the nucleus and mitochondriaH J You, R L Swanson, C Harrington, et al.Pageof 4