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Genetics|October 1, 1989
Position effects in ectopic and allelic mitotic recombination in Saccharomyces cerevisiaeM Lichten, J E HaberGenetics|September 1, 1985
Rad52-independent mitotic gene conversion in Saccharomyces cerevisiae frequently results in chromosomal lossJ E Haber, M HearnAnnual Review of Genetics|November 14, 2012
Mutations arising during repair of chromosome breaksAnna Malkova, James E HaberJournal of Bacteriology|April 1, 1978
New cytoplasmic genetic element that controls 20S RNA synthesis during sporulation in yeastB Garvik, J E HaberMethods in Enzymology|June 24, 2006
Repair of DNA double strand breaks: in vivo biochemistryNeal Sugawara, James E HaberBiochemistry|September 5, 1978
Isolation of an active variable-domain fragment from a homogeneous rabbit antibody heavy chain. Physiochemical and immunological propertiesM S Rosemblatt, E HaberNucleic Acids Research|September 25, 1984
Subtelomeric regions of yeast chromosomes contain a 36 base-pair tandemly repeated sequenceH Horowitz, J E HaberMethods in Enzymology|March 11, 2018
Assaying Mutations Associated With Gene Conversion Repair of a Double-Strand BreakGajendrahar Dwivedi, James E HaberMolecular and Cellular Biology|September 1, 1988
Efficient repair of HO-induced chromosomal breaks in Saccharomyces cerevisiae by recombination between flanking homologous sequencesN Rudin, J E HaberMolecular and Cellular Biology|February 1, 1992
Characterization of double-strand break-induced recombination: homology requirements and single-stranded DNA formationN Sugawara, J E HaberPageof 101